/* There are a total of 288 entries in the algebraic variable array. There are a total of 78 entries in each of the rate and state variable arrays. There are a total of 730 entries in the constant variable array. */ /* * VOI is time in component environment (second). * ALGEBRAIC[0] is I_CaT in component I_CaT (picoampere). * CONSTANTS[0] is g_CaT in component I_CaT (picosiemens). * CONSTANTS[1] is ECaT in component I_CaT (millivolt). * CONSTANTS[2] is alpha_OT in component I_CaT (first_order_rate_constant). * CONSTANTS[3] is beta_OT in component I_CaT (first_order_rate_constant). * STATES[0] is OCaT in component I_CaT (dimensionless). * STATES[1] is Vm in component membrane (millivolt). * STATES[2] is dT in component I_CaT_d_gate (dimensionless). * STATES[3] is fT in component I_CaT_f_gate (dimensionless). * ALGEBRAIC[1] is infinity_dT in component I_CaT_d_gate (dimensionless). * CONSTANTS[648] is tau_dT1 in component I_CaT_d_gate (second). * CONSTANTS[4] is A_dT1 in component I_CaT_d_gate (second). * CONSTANTS[5] is k_dT in component I_CaT_d_gate (per_millivolt). * CONSTANTS[6] is V_dT in component I_CaT_d_gate (millivolt). * ALGEBRAIC[2] is infinity_fT in component I_CaT_f_gate (dimensionless). * ALGEBRAIC[3] is tau_fT1 in component I_CaT_f_gate (second). * CONSTANTS[7] is A_fT1 in component I_CaT_f_gate (second). * CONSTANTS[8] is A_fT2 in component I_CaT_f_gate (second). * CONSTANTS[9] is A_fT3 in component I_CaT_f_gate (per_millivolt). * CONSTANTS[10] is A_fT4 in component I_CaT_f_gate (millivolt). * CONSTANTS[11] is k_fT in component I_CaT_f_gate (per_millivolt). * CONSTANTS[12] is V_fT in component I_CaT_f_gate (millivolt). * ALGEBRAIC[4] is I_CaExt in component I_CaExt (picoampere). * CONSTANTS[13] is gCaExt in component I_CaExt (femtoampere). * CONSTANTS[14] is KCaExt in component I_CaExt (micromolar). * STATES[4] is CCy in component CCy (micromolar). * ALGEBRAIC[5] is I_Kv1_1 in component I_Kv1_1 (picoampere). * CONSTANTS[15] is g_Kv1_1 in component I_Kv1_1 (picosiemens). * CONSTANTS[649] is EK in component Nerst_potentials (millivolt). * STATES[5] is dv1_1 in component I_Kv1_1_d_gate (dimensionless). * STATES[6] is fv1_1 in component I_Kv1_1_f_gate (dimensionless). * ALGEBRAIC[6] is alpha_dv1_1 in component I_Kv1_1_d_gate (first_order_rate_constant). * CONSTANTS[16] is A_dv1_11 in component I_Kv1_1_d_gate (first_order_rate_constant). * CONSTANTS[17] is A_dv1_12 in component I_Kv1_1_d_gate (dimensionless). * CONSTANTS[18] is A_dv1_13 in component I_Kv1_1_d_gate (per_millivolt). * CONSTANTS[19] is A_dv1_14 in component I_Kv1_1_d_gate (millivolt). * ALGEBRAIC[7] is beta_dv1_1 in component I_Kv1_1_d_gate (first_order_rate_constant). * ALGEBRAIC[8] is alpha_fv1_1 in component I_Kv1_1_f_gate (first_order_rate_constant). * CONSTANTS[20] is A_fv1_11 in component I_Kv1_1_f_gate (first_order_rate_constant). * CONSTANTS[21] is A_fv1_12 in component I_Kv1_1_f_gate (dimensionless). * CONSTANTS[22] is A_fv1_13 in component I_Kv1_1_f_gate (per_millivolt). * CONSTANTS[23] is A_fv1_14 in component I_Kv1_1_f_gate (millivolt). * ALGEBRAIC[9] is beta_fv1_1 in component I_Kv1_1_f_gate (first_order_rate_constant). * ALGEBRAIC[10] is I_KERG in component I_KERG (picoampere). * CONSTANTS[24] is g_KERG in component I_KERG (picosiemens). * STATES[7] is dERG in component I_KERG_d_gate (dimensionless). * ALGEBRAIC[11] is alpha_dERG in component I_KERG_d_gate (first_order_rate_constant). * CONSTANTS[25] is A_dERG1 in component I_KERG_d_gate (first_order_rate_constant). * CONSTANTS[26] is A_dERG2 in component I_KERG_d_gate (dimensionless). * CONSTANTS[27] is A_dERG3 in component I_KERG_d_gate (per_millivolt). * CONSTANTS[28] is A_dERG4 in component I_KERG_d_gate (millivolt). * ALGEBRAIC[12] is beta_dERG in component I_KERG_d_gate (first_order_rate_constant). * ALGEBRAIC[13] is I_KB in component I_KB (picoampere). * CONSTANTS[29] is g_KB in component I_KB (picosiemens). * CONSTANTS[30] is EKB in component I_KB (millivolt). * ALGEBRAIC[14] is I_L in component I_L (picoampere). * CONSTANTS[31] is g_L in component I_L (picosiemens). * CONSTANTS[32] is EL in component I_L (millivolt). * ALGEBRAIC[15] is I_ion_Cy in component membrane (picoampere). * CONSTANTS[33] is Cm in component membrane (picofarad). * ALGEBRAIC[260] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[263] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[266] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[269] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[272] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[275] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[278] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[281] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[284] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[287] is I_ion_PU in component PU_membrane (picoampere). * ALGEBRAIC[16] is ECa_Cy in component Nerst_potentials (millivolt). * CONSTANTS[34] is T in component model_parameters (kelvin). * CONSTANTS[35] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[36] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[37] is CO in component model_parameters (micromolar). * CONSTANTS[38] is KO in component model_parameters (micromolar). * CONSTANTS[39] is Ki in component model_parameters (micromolar). * CONSTANTS[40] is lambda_S2_Cy in component CCy (dimensionless). * CONSTANTS[41] is delta_SCy in component CCy (micromolar_per_coulomb). * ALGEBRAIC[37] is JCy in component JCy (flux). * ALGEBRAIC[17] is JS2Cy1 in component JS2Cy (flux). * ALGEBRAIC[18] is JS2Cy2 in component JS2Cy (flux). * ALGEBRAIC[19] is JS2Cy3 in component JS2Cy (flux). * ALGEBRAIC[20] is JS2Cy4 in component JS2Cy (flux). * ALGEBRAIC[21] is JS2Cy5 in component JS2Cy (flux). * ALGEBRAIC[22] is JS2Cy6 in component JS2Cy (flux). * ALGEBRAIC[23] is JS2Cy7 in component JS2Cy (flux). * ALGEBRAIC[24] is JS2Cy8 in component JS2Cy (flux). * ALGEBRAIC[25] is JS2Cy9 in component JS2Cy (flux). * ALGEBRAIC[26] is JS2Cy10 in component JS2Cy (flux). * CONSTANTS[42] is mu_S2Cy1 in component JS2Cy (first_order_rate_constant). * CONSTANTS[43] is mu_S2Cy2 in component JS2Cy (first_order_rate_constant). * CONSTANTS[44] is mu_S2Cy3 in component JS2Cy (first_order_rate_constant). * CONSTANTS[45] is mu_S2Cy4 in component JS2Cy (first_order_rate_constant). * CONSTANTS[46] is mu_S2Cy5 in component JS2Cy (first_order_rate_constant). * CONSTANTS[47] is mu_S2Cy6 in component JS2Cy (first_order_rate_constant). * CONSTANTS[48] is mu_S2Cy7 in component JS2Cy (first_order_rate_constant). * CONSTANTS[49] is mu_S2Cy8 in component JS2Cy (first_order_rate_constant). * CONSTANTS[50] is mu_S2Cy9 in component JS2Cy (first_order_rate_constant). * CONSTANTS[51] is mu_S2Cy10 in component JS2Cy (first_order_rate_constant). * STATES[8] is CS2 in component CS2 (micromolar). * STATES[9] is CS2 in component CS2 (micromolar). * STATES[10] is CS2 in component CS2 (micromolar). * STATES[11] is CS2 in component CS2 (micromolar). * STATES[12] is CS2 in component CS2 (micromolar). * STATES[13] is CS2 in component CS2 (micromolar). * STATES[14] is CS2 in component CS2 (micromolar). * STATES[15] is CS2 in component CS2 (micromolar). * STATES[16] is CS2 in component CS2 (micromolar). * STATES[17] is CS2 in component CS2 (micromolar). * ALGEBRAIC[27] is JS1S2_1 in component JS1S2 (flux). * ALGEBRAIC[28] is JS1S2_2 in component JS1S2 (flux). * ALGEBRAIC[29] is JS1S2_3 in component JS1S2 (flux). * ALGEBRAIC[30] is JS1S2_4 in component JS1S2 (flux). * ALGEBRAIC[31] is JS1S2_5 in component JS1S2 (flux). * ALGEBRAIC[32] is JS1S2_6 in component JS1S2 (flux). * ALGEBRAIC[33] is JS1S2_7 in component JS1S2 (flux). * ALGEBRAIC[34] is JS1S2_8 in component JS1S2 (flux). * ALGEBRAIC[35] is JS1S2_9 in component JS1S2 (flux). * ALGEBRAIC[36] is JS1S2_10 in component JS1S2 (flux). * CONSTANTS[651] is mu_S1S2_1 in component JS1S2 (first_order_rate_constant). * CONSTANTS[652] is mu_S1S2_2 in component JS1S2 (first_order_rate_constant). * CONSTANTS[653] is mu_S1S2_3 in component JS1S2 (first_order_rate_constant). * CONSTANTS[654] is mu_S1S2_4 in component JS1S2 (first_order_rate_constant). * CONSTANTS[655] is mu_S1S2_5 in component JS1S2 (first_order_rate_constant). * CONSTANTS[656] is mu_S1S2_6 in component JS1S2 (first_order_rate_constant). * CONSTANTS[657] is mu_S1S2_7 in component JS1S2 (first_order_rate_constant). * CONSTANTS[658] is mu_S1S2_8 in component JS1S2 (first_order_rate_constant). * CONSTANTS[659] is mu_S1S2_9 in component JS1S2 (first_order_rate_constant). * CONSTANTS[660] is mu_S1S2_10 in component JS1S2 (first_order_rate_constant). * CONSTANTS[52] is mu_A in component JS1S2 (first_order_rate_constant). * CONSTANTS[53] is mu_B in component JS1S2 (first_order_rate_constant). * CONSTANTS[54] is n_PU in component model_parameters (dimensionless). * STATES[18] is CS1 in component CS1 (micromolar). * STATES[19] is CS1 in component CS1 (micromolar). * STATES[20] is CS1 in component CS1 (micromolar). * STATES[21] is CS1 in component CS1 (micromolar). * STATES[22] is CS1 in component CS1 (micromolar). * STATES[23] is CS1 in component CS1 (micromolar). * STATES[24] is CS1 in component CS1 (micromolar). * STATES[25] is CS1 in component CS1 (micromolar). * STATES[26] is CS1 in component CS1 (micromolar). * STATES[27] is CS1 in component CS1 (micromolar). * CONSTANTS[55] is mu_Cy in component JCy (first_order_rate_constant). * CONSTANTS[56] is C_infinity in component JCy (micromolar). * CONSTANTS[57] is P in component model_parameters (micromolar). * ALGEBRAIC[258] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[259] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[675] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[218] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[219] is I_Na in component I_Na (picoampere). * ALGEBRAIC[46] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[42] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[45] is I_PM in component I_PM (picoampere). * ALGEBRAIC[44] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[58] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[59] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[38] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[39] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[60] is T in component model_parameters (kelvin). * CONSTANTS[61] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[62] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[63] is CO in component model_parameters (micromolar). * CONSTANTS[64] is gNa in component I_Na (picosiemens). * ALGEBRAIC[40] is ENa_PU in component I_Na (millivolt). * CONSTANTS[65] is NO in component model_parameters (micromolar). * STATES[28] is NS1 in component NS1 (micromolar). * CONSTANTS[66] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[41] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[67] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[68] is ENSCC in component model_parameters (millivolt). * CONSTANTS[69] is KNSCC in component model_parameters (micromolar). * CONSTANTS[70] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[43] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[71] is gPM in component I_PM (femtoampere). * CONSTANTS[72] is KPM in component I_PM (micromolar). * CONSTANTS[73] is gNaP in component I_NaP (picosiemens). * CONSTANTS[74] is KNaP in component I_NaP (micromolar). * CONSTANTS[75] is hNaP in component I_NaP (dimensionless). * CONSTANTS[76] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[47] is JSERCA in component JSERCA (flux). * CONSTANTS[77] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[78] is A2 in component JSERCA (dimensionless). * CONSTANTS[79] is A4 in component JSERCA (per_micromolar). * CONSTANTS[80] is A5 in component JSERCA (per_micromolar). * CONSTANTS[81] is A6 in component JSERCA (per_micromolar2). * STATES[29] is CER in component CER (micromolar). * ALGEBRAIC[220] is JMCU in component JMCU (flux). * CONSTANTS[82] is VMCU in component JMCU (flux). * CONSTANTS[83] is KMCU in component JMCU (micromolar). * ALGEBRAIC[48] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[84] is KINH in component JMCU (micromolar). * CONSTANTS[85] is hINH in component JMCU (dimensionless). * STATES[30] is CMT in component CMT (micromolar). * ALGEBRAIC[221] is JIPR in component JIPR (flux). * CONSTANTS[86] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[87] is k_1 in component JIPR (flux). * CONSTANTS[88] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[89] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[90] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[91] is r_2 in component JIPR (flux). * CONSTANTS[92] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[93] is R1 in component JIPR (micromolar). * CONSTANTS[94] is R3 in component JIPR (micromolar). * ALGEBRAIC[49] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[50] is phi_1 in component JIPR (flux). * ALGEBRAIC[51] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[52] is phi3 in component JIPR (first_order_rate_constant). * STATES[31] is H in component JIPR (dimensionless). * CONSTANTS[95] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[96] is h_beta in component JIPR (dimensionless). * CONSTANTS[97] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[98] is K_beta in component JIPR (micromolar). * CONSTANTS[661] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[53] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[32] is zeta in component JIPR (dimensionless). * CONSTANTS[99] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[100] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[101] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[102] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[103] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[104] is P in component model_parameters (micromolar). * ALGEBRAIC[54] is JNCX in component JNCX (flux). * CONSTANTS[105] is VNCX in component JNCX (flux). * CONSTANTS[106] is KNCX in component JNCX (micromolar). * CONSTANTS[650] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[671] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[107] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[108] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[109] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[110] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[672] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[673] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[674] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[111] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[55] is fm in component CMT (dimensionless). * CONSTANTS[112] is Km in component CMT (micromolar). * CONSTANTS[113] is Bm in component CMT (micromolar). * CONSTANTS[114] is KO in component model_parameters (micromolar). * CONSTANTS[115] is Ki in component model_parameters (micromolar). * CONSTANTS[116] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[261] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[262] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[681] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[222] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[223] is I_Na in component I_Na (picoampere). * ALGEBRAIC[64] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[60] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[63] is I_PM in component I_PM (picoampere). * ALGEBRAIC[62] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[117] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[118] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[56] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[57] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[119] is T in component model_parameters (kelvin). * CONSTANTS[120] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[121] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[122] is CO in component model_parameters (micromolar). * CONSTANTS[123] is gNa in component I_Na (picosiemens). * ALGEBRAIC[58] is ENa_PU in component I_Na (millivolt). * CONSTANTS[124] is NO in component model_parameters (micromolar). * STATES[33] is NS1 in component NS1 (micromolar). * CONSTANTS[125] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[59] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[126] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[127] is ENSCC in component model_parameters (millivolt). * CONSTANTS[128] is KNSCC in component model_parameters (micromolar). * CONSTANTS[129] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[61] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[130] is gPM in component I_PM (femtoampere). * CONSTANTS[131] is KPM in component I_PM (micromolar). * CONSTANTS[132] is gNaP in component I_NaP (picosiemens). * CONSTANTS[133] is KNaP in component I_NaP (micromolar). * CONSTANTS[134] is hNaP in component I_NaP (dimensionless). * CONSTANTS[135] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[65] is JSERCA in component JSERCA (flux). * CONSTANTS[136] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[137] is A2 in component JSERCA (dimensionless). * CONSTANTS[138] is A4 in component JSERCA (per_micromolar). * CONSTANTS[139] is A5 in component JSERCA (per_micromolar). * CONSTANTS[140] is A6 in component JSERCA (per_micromolar2). * STATES[34] is CER in component CER (micromolar). * ALGEBRAIC[224] is JMCU in component JMCU (flux). * CONSTANTS[141] is VMCU in component JMCU (flux). * CONSTANTS[142] is KMCU in component JMCU (micromolar). * ALGEBRAIC[66] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[143] is KINH in component JMCU (micromolar). * CONSTANTS[144] is hINH in component JMCU (dimensionless). * STATES[35] is CMT in component CMT (micromolar). * ALGEBRAIC[225] is JIPR in component JIPR (flux). * CONSTANTS[145] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[146] is k_1 in component JIPR (flux). * CONSTANTS[147] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[148] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[149] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[150] is r_2 in component JIPR (flux). * CONSTANTS[151] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[152] is R1 in component JIPR (micromolar). * CONSTANTS[153] is R3 in component JIPR (micromolar). * ALGEBRAIC[67] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[68] is phi_1 in component JIPR (flux). * ALGEBRAIC[69] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[70] is phi3 in component JIPR (first_order_rate_constant). * STATES[36] is H in component JIPR (dimensionless). * CONSTANTS[154] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[155] is h_beta in component JIPR (dimensionless). * CONSTANTS[156] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[157] is K_beta in component JIPR (micromolar). * CONSTANTS[662] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[71] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[37] is zeta in component JIPR (dimensionless). * CONSTANTS[158] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[159] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[160] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[161] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[162] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[163] is P in component model_parameters (micromolar). * ALGEBRAIC[72] is JNCX in component JNCX (flux). * CONSTANTS[164] is VNCX in component JNCX (flux). * CONSTANTS[165] is KNCX in component JNCX (micromolar). * CONSTANTS[676] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[677] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[166] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[167] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[168] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[169] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[678] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[679] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[680] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[170] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[73] is fm in component CMT (dimensionless). * CONSTANTS[171] is Km in component CMT (micromolar). * CONSTANTS[172] is Bm in component CMT (micromolar). * CONSTANTS[173] is KO in component model_parameters (micromolar). * CONSTANTS[174] is Ki in component model_parameters (micromolar). * CONSTANTS[175] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[264] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[265] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[687] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[226] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[227] is I_Na in component I_Na (picoampere). * ALGEBRAIC[82] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[78] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[81] is I_PM in component I_PM (picoampere). * ALGEBRAIC[80] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[176] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[177] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[74] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[75] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[178] is T in component model_parameters (kelvin). * CONSTANTS[179] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[180] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[181] is CO in component model_parameters (micromolar). * CONSTANTS[182] is gNa in component I_Na (picosiemens). * ALGEBRAIC[76] is ENa_PU in component I_Na (millivolt). * CONSTANTS[183] is NO in component model_parameters (micromolar). * STATES[38] is NS1 in component NS1 (micromolar). * CONSTANTS[184] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[77] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[185] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[186] is ENSCC in component model_parameters (millivolt). * CONSTANTS[187] is KNSCC in component model_parameters (micromolar). * CONSTANTS[188] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[79] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[189] is gPM in component I_PM (femtoampere). * CONSTANTS[190] is KPM in component I_PM (micromolar). * CONSTANTS[191] is gNaP in component I_NaP (picosiemens). * CONSTANTS[192] is KNaP in component I_NaP (micromolar). * CONSTANTS[193] is hNaP in component I_NaP (dimensionless). * CONSTANTS[194] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[83] is JSERCA in component JSERCA (flux). * CONSTANTS[195] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[196] is A2 in component JSERCA (dimensionless). * CONSTANTS[197] is A4 in component JSERCA (per_micromolar). * CONSTANTS[198] is A5 in component JSERCA (per_micromolar). * CONSTANTS[199] is A6 in component JSERCA (per_micromolar2). * STATES[39] is CER in component CER (micromolar). * ALGEBRAIC[228] is JMCU in component JMCU (flux). * CONSTANTS[200] is VMCU in component JMCU (flux). * CONSTANTS[201] is KMCU in component JMCU (micromolar). * ALGEBRAIC[84] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[202] is KINH in component JMCU (micromolar). * CONSTANTS[203] is hINH in component JMCU (dimensionless). * STATES[40] is CMT in component CMT (micromolar). * ALGEBRAIC[229] is JIPR in component JIPR (flux). * CONSTANTS[204] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[205] is k_1 in component JIPR (flux). * CONSTANTS[206] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[207] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[208] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[209] is r_2 in component JIPR (flux). * CONSTANTS[210] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[211] is R1 in component JIPR (micromolar). * CONSTANTS[212] is R3 in component JIPR (micromolar). * ALGEBRAIC[85] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[86] is phi_1 in component JIPR (flux). * ALGEBRAIC[87] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[88] is phi3 in component JIPR (first_order_rate_constant). * STATES[41] is H in component JIPR (dimensionless). * CONSTANTS[213] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[214] is h_beta in component JIPR (dimensionless). * CONSTANTS[215] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[216] is K_beta in component JIPR (micromolar). * CONSTANTS[663] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[89] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[42] is zeta in component JIPR (dimensionless). * CONSTANTS[217] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[218] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[219] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[220] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[221] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[222] is P in component model_parameters (micromolar). * ALGEBRAIC[90] is JNCX in component JNCX (flux). * CONSTANTS[223] is VNCX in component JNCX (flux). * CONSTANTS[224] is KNCX in component JNCX (micromolar). * CONSTANTS[682] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[683] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[225] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[226] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[227] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[228] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[684] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[685] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[686] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[229] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[91] is fm in component CMT (dimensionless). * CONSTANTS[230] is Km in component CMT (micromolar). * CONSTANTS[231] is Bm in component CMT (micromolar). * CONSTANTS[232] is KO in component model_parameters (micromolar). * CONSTANTS[233] is Ki in component model_parameters (micromolar). * CONSTANTS[234] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[267] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[268] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[693] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[230] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[231] is I_Na in component I_Na (picoampere). * ALGEBRAIC[100] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[96] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[99] is I_PM in component I_PM (picoampere). * ALGEBRAIC[98] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[235] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[236] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[92] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[93] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[237] is T in component model_parameters (kelvin). * CONSTANTS[238] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[239] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[240] is CO in component model_parameters (micromolar). * CONSTANTS[241] is gNa in component I_Na (picosiemens). * ALGEBRAIC[94] is ENa_PU in component I_Na (millivolt). * CONSTANTS[242] is NO in component model_parameters (micromolar). * STATES[43] is NS1 in component NS1 (micromolar). * CONSTANTS[243] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[95] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[244] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[245] is ENSCC in component model_parameters (millivolt). * CONSTANTS[246] is KNSCC in component model_parameters (micromolar). * CONSTANTS[247] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[97] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[248] is gPM in component I_PM (femtoampere). * CONSTANTS[249] is KPM in component I_PM (micromolar). * CONSTANTS[250] is gNaP in component I_NaP (picosiemens). * CONSTANTS[251] is KNaP in component I_NaP (micromolar). * CONSTANTS[252] is hNaP in component I_NaP (dimensionless). * CONSTANTS[253] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[101] is JSERCA in component JSERCA (flux). * CONSTANTS[254] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[255] is A2 in component JSERCA (dimensionless). * CONSTANTS[256] is A4 in component JSERCA (per_micromolar). * CONSTANTS[257] is A5 in component JSERCA (per_micromolar). * CONSTANTS[258] is A6 in component JSERCA (per_micromolar2). * STATES[44] is CER in component CER (micromolar). * ALGEBRAIC[232] is JMCU in component JMCU (flux). * CONSTANTS[259] is VMCU in component JMCU (flux). * CONSTANTS[260] is KMCU in component JMCU (micromolar). * ALGEBRAIC[102] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[261] is KINH in component JMCU (micromolar). * CONSTANTS[262] is hINH in component JMCU (dimensionless). * STATES[45] is CMT in component CMT (micromolar). * ALGEBRAIC[233] is JIPR in component JIPR (flux). * CONSTANTS[263] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[264] is k_1 in component JIPR (flux). * CONSTANTS[265] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[266] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[267] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[268] is r_2 in component JIPR (flux). * CONSTANTS[269] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[270] is R1 in component JIPR (micromolar). * CONSTANTS[271] is R3 in component JIPR (micromolar). * ALGEBRAIC[103] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[104] is phi_1 in component JIPR (flux). * ALGEBRAIC[105] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[106] is phi3 in component JIPR (first_order_rate_constant). * STATES[46] is H in component JIPR (dimensionless). * CONSTANTS[272] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[273] is h_beta in component JIPR (dimensionless). * CONSTANTS[274] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[275] is K_beta in component JIPR (micromolar). * CONSTANTS[664] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[107] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[47] is zeta in component JIPR (dimensionless). * CONSTANTS[276] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[277] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[278] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[279] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[280] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[281] is P in component model_parameters (micromolar). * ALGEBRAIC[108] is JNCX in component JNCX (flux). * CONSTANTS[282] is VNCX in component JNCX (flux). * CONSTANTS[283] is KNCX in component JNCX (micromolar). * CONSTANTS[688] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[689] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[284] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[285] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[286] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[287] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[690] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[691] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[692] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[288] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[109] is fm in component CMT (dimensionless). * CONSTANTS[289] is Km in component CMT (micromolar). * CONSTANTS[290] is Bm in component CMT (micromolar). * CONSTANTS[291] is KO in component model_parameters (micromolar). * CONSTANTS[292] is Ki in component model_parameters (micromolar). * CONSTANTS[293] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[270] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[271] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[699] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[234] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[235] is I_Na in component I_Na (picoampere). * ALGEBRAIC[118] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[114] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[117] is I_PM in component I_PM (picoampere). * ALGEBRAIC[116] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[294] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[295] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[110] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[111] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[296] is T in component model_parameters (kelvin). * CONSTANTS[297] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[298] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[299] is CO in component model_parameters (micromolar). * CONSTANTS[300] is gNa in component I_Na (picosiemens). * ALGEBRAIC[112] is ENa_PU in component I_Na (millivolt). * CONSTANTS[301] is NO in component model_parameters (micromolar). * STATES[48] is NS1 in component NS1 (micromolar). * CONSTANTS[302] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[113] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[303] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[304] is ENSCC in component model_parameters (millivolt). * CONSTANTS[305] is KNSCC in component model_parameters (micromolar). * CONSTANTS[306] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[115] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[307] is gPM in component I_PM (femtoampere). * CONSTANTS[308] is KPM in component I_PM (micromolar). * CONSTANTS[309] is gNaP in component I_NaP (picosiemens). * CONSTANTS[310] is KNaP in component I_NaP (micromolar). * CONSTANTS[311] is hNaP in component I_NaP (dimensionless). * CONSTANTS[312] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[119] is JSERCA in component JSERCA (flux). * CONSTANTS[313] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[314] is A2 in component JSERCA (dimensionless). * CONSTANTS[315] is A4 in component JSERCA (per_micromolar). * CONSTANTS[316] is A5 in component JSERCA (per_micromolar). * CONSTANTS[317] is A6 in component JSERCA (per_micromolar2). * STATES[49] is CER in component CER (micromolar). * ALGEBRAIC[236] is JMCU in component JMCU (flux). * CONSTANTS[318] is VMCU in component JMCU (flux). * CONSTANTS[319] is KMCU in component JMCU (micromolar). * ALGEBRAIC[120] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[320] is KINH in component JMCU (micromolar). * CONSTANTS[321] is hINH in component JMCU (dimensionless). * STATES[50] is CMT in component CMT (micromolar). * ALGEBRAIC[237] is JIPR in component JIPR (flux). * CONSTANTS[322] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[323] is k_1 in component JIPR (flux). * CONSTANTS[324] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[325] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[326] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[327] is r_2 in component JIPR (flux). * CONSTANTS[328] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[329] is R1 in component JIPR (micromolar). * CONSTANTS[330] is R3 in component JIPR (micromolar). * ALGEBRAIC[121] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[122] is phi_1 in component JIPR (flux). * ALGEBRAIC[123] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[124] is phi3 in component JIPR (first_order_rate_constant). * STATES[51] is H in component JIPR (dimensionless). * CONSTANTS[331] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[332] is h_beta in component JIPR (dimensionless). * CONSTANTS[333] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[334] is K_beta in component JIPR (micromolar). * CONSTANTS[665] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[125] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[52] is zeta in component JIPR (dimensionless). * CONSTANTS[335] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[336] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[337] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[338] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[339] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[340] is P in component model_parameters (micromolar). * ALGEBRAIC[126] is JNCX in component JNCX (flux). * CONSTANTS[341] is VNCX in component JNCX (flux). * CONSTANTS[342] is KNCX in component JNCX (micromolar). * CONSTANTS[694] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[695] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[343] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[344] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[345] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[346] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[696] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[697] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[698] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[347] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[127] is fm in component CMT (dimensionless). * CONSTANTS[348] is Km in component CMT (micromolar). * CONSTANTS[349] is Bm in component CMT (micromolar). * CONSTANTS[350] is KO in component model_parameters (micromolar). * CONSTANTS[351] is Ki in component model_parameters (micromolar). * CONSTANTS[352] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[273] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[274] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[705] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[238] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[239] is I_Na in component I_Na (picoampere). * ALGEBRAIC[136] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[132] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[135] is I_PM in component I_PM (picoampere). * ALGEBRAIC[134] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[353] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[354] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[128] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[129] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[355] is T in component model_parameters (kelvin). * CONSTANTS[356] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[357] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[358] is CO in component model_parameters (micromolar). * CONSTANTS[359] is gNa in component I_Na (picosiemens). * ALGEBRAIC[130] is ENa_PU in component I_Na (millivolt). * CONSTANTS[360] is NO in component model_parameters (micromolar). * STATES[53] is NS1 in component NS1 (micromolar). * CONSTANTS[361] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[131] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[362] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[363] is ENSCC in component model_parameters (millivolt). * CONSTANTS[364] is KNSCC in component model_parameters (micromolar). * CONSTANTS[365] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[133] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[366] is gPM in component I_PM (femtoampere). * CONSTANTS[367] is KPM in component I_PM (micromolar). * CONSTANTS[368] is gNaP in component I_NaP (picosiemens). * CONSTANTS[369] is KNaP in component I_NaP (micromolar). * CONSTANTS[370] is hNaP in component I_NaP (dimensionless). * CONSTANTS[371] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[137] is JSERCA in component JSERCA (flux). * CONSTANTS[372] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[373] is A2 in component JSERCA (dimensionless). * CONSTANTS[374] is A4 in component JSERCA (per_micromolar). * CONSTANTS[375] is A5 in component JSERCA (per_micromolar). * CONSTANTS[376] is A6 in component JSERCA (per_micromolar2). * STATES[54] is CER in component CER (micromolar). * ALGEBRAIC[240] is JMCU in component JMCU (flux). * CONSTANTS[377] is VMCU in component JMCU (flux). * CONSTANTS[378] is KMCU in component JMCU (micromolar). * ALGEBRAIC[138] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[379] is KINH in component JMCU (micromolar). * CONSTANTS[380] is hINH in component JMCU (dimensionless). * STATES[55] is CMT in component CMT (micromolar). * ALGEBRAIC[241] is JIPR in component JIPR (flux). * CONSTANTS[381] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[382] is k_1 in component JIPR (flux). * CONSTANTS[383] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[384] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[385] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[386] is r_2 in component JIPR (flux). * CONSTANTS[387] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[388] is R1 in component JIPR (micromolar). * CONSTANTS[389] is R3 in component JIPR (micromolar). * ALGEBRAIC[139] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[140] is phi_1 in component JIPR (flux). * ALGEBRAIC[141] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[142] is phi3 in component JIPR (first_order_rate_constant). * STATES[56] is H in component JIPR (dimensionless). * CONSTANTS[390] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[391] is h_beta in component JIPR (dimensionless). * CONSTANTS[392] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[393] is K_beta in component JIPR (micromolar). * CONSTANTS[666] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[143] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[57] is zeta in component JIPR (dimensionless). * CONSTANTS[394] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[395] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[396] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[397] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[398] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[399] is P in component model_parameters (micromolar). * ALGEBRAIC[144] is JNCX in component JNCX (flux). * CONSTANTS[400] is VNCX in component JNCX (flux). * CONSTANTS[401] is KNCX in component JNCX (micromolar). * CONSTANTS[700] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[701] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[402] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[403] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[404] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[405] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[702] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[703] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[704] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[406] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[145] is fm in component CMT (dimensionless). * CONSTANTS[407] is Km in component CMT (micromolar). * CONSTANTS[408] is Bm in component CMT (micromolar). * CONSTANTS[409] is KO in component model_parameters (micromolar). * CONSTANTS[410] is Ki in component model_parameters (micromolar). * CONSTANTS[411] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[276] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[277] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[711] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[242] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[243] is I_Na in component I_Na (picoampere). * ALGEBRAIC[154] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[150] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[153] is I_PM in component I_PM (picoampere). * ALGEBRAIC[152] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[412] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[413] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[146] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[147] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[414] is T in component model_parameters (kelvin). * CONSTANTS[415] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[416] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[417] is CO in component model_parameters (micromolar). * CONSTANTS[418] is gNa in component I_Na (picosiemens). * ALGEBRAIC[148] is ENa_PU in component I_Na (millivolt). * CONSTANTS[419] is NO in component model_parameters (micromolar). * STATES[58] is NS1 in component NS1 (micromolar). * CONSTANTS[420] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[149] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[421] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[422] is ENSCC in component model_parameters (millivolt). * CONSTANTS[423] is KNSCC in component model_parameters (micromolar). * CONSTANTS[424] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[151] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[425] is gPM in component I_PM (femtoampere). * CONSTANTS[426] is KPM in component I_PM (micromolar). * CONSTANTS[427] is gNaP in component I_NaP (picosiemens). * CONSTANTS[428] is KNaP in component I_NaP (micromolar). * CONSTANTS[429] is hNaP in component I_NaP (dimensionless). * CONSTANTS[430] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[155] is JSERCA in component JSERCA (flux). * CONSTANTS[431] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[432] is A2 in component JSERCA (dimensionless). * CONSTANTS[433] is A4 in component JSERCA (per_micromolar). * CONSTANTS[434] is A5 in component JSERCA (per_micromolar). * CONSTANTS[435] is A6 in component JSERCA (per_micromolar2). * STATES[59] is CER in component CER (micromolar). * ALGEBRAIC[244] is JMCU in component JMCU (flux). * CONSTANTS[436] is VMCU in component JMCU (flux). * CONSTANTS[437] is KMCU in component JMCU (micromolar). * ALGEBRAIC[156] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[438] is KINH in component JMCU (micromolar). * CONSTANTS[439] is hINH in component JMCU (dimensionless). * STATES[60] is CMT in component CMT (micromolar). * ALGEBRAIC[245] is JIPR in component JIPR (flux). * CONSTANTS[440] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[441] is k_1 in component JIPR (flux). * CONSTANTS[442] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[443] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[444] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[445] is r_2 in component JIPR (flux). * CONSTANTS[446] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[447] is R1 in component JIPR (micromolar). * CONSTANTS[448] is R3 in component JIPR (micromolar). * ALGEBRAIC[157] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[158] is phi_1 in component JIPR (flux). * ALGEBRAIC[159] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[160] is phi3 in component JIPR (first_order_rate_constant). * STATES[61] is H in component JIPR (dimensionless). * CONSTANTS[449] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[450] is h_beta in component JIPR (dimensionless). * CONSTANTS[451] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[452] is K_beta in component JIPR (micromolar). * CONSTANTS[667] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[161] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[62] is zeta in component JIPR (dimensionless). * CONSTANTS[453] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[454] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[455] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[456] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[457] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[458] is P in component model_parameters (micromolar). * ALGEBRAIC[162] is JNCX in component JNCX (flux). * CONSTANTS[459] is VNCX in component JNCX (flux). * CONSTANTS[460] is KNCX in component JNCX (micromolar). * CONSTANTS[706] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[707] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[461] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[462] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[463] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[464] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[708] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[709] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[710] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[465] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[163] is fm in component CMT (dimensionless). * CONSTANTS[466] is Km in component CMT (micromolar). * CONSTANTS[467] is Bm in component CMT (micromolar). * CONSTANTS[468] is KO in component model_parameters (micromolar). * CONSTANTS[469] is Ki in component model_parameters (micromolar). * CONSTANTS[470] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[279] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[280] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[717] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[246] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[247] is I_Na in component I_Na (picoampere). * ALGEBRAIC[172] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[168] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[171] is I_PM in component I_PM (picoampere). * ALGEBRAIC[170] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[471] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[472] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[164] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[165] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[473] is T in component model_parameters (kelvin). * CONSTANTS[474] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[475] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[476] is CO in component model_parameters (micromolar). * CONSTANTS[477] is gNa in component I_Na (picosiemens). * ALGEBRAIC[166] is ENa_PU in component I_Na (millivolt). * CONSTANTS[478] is NO in component model_parameters (micromolar). * STATES[63] is NS1 in component NS1 (micromolar). * CONSTANTS[479] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[167] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[480] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[481] is ENSCC in component model_parameters (millivolt). * CONSTANTS[482] is KNSCC in component model_parameters (micromolar). * CONSTANTS[483] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[169] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[484] is gPM in component I_PM (femtoampere). * CONSTANTS[485] is KPM in component I_PM (micromolar). * CONSTANTS[486] is gNaP in component I_NaP (picosiemens). * CONSTANTS[487] is KNaP in component I_NaP (micromolar). * CONSTANTS[488] is hNaP in component I_NaP (dimensionless). * CONSTANTS[489] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[173] is JSERCA in component JSERCA (flux). * CONSTANTS[490] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[491] is A2 in component JSERCA (dimensionless). * CONSTANTS[492] is A4 in component JSERCA (per_micromolar). * CONSTANTS[493] is A5 in component JSERCA (per_micromolar). * CONSTANTS[494] is A6 in component JSERCA (per_micromolar2). * STATES[64] is CER in component CER (micromolar). * ALGEBRAIC[248] is JMCU in component JMCU (flux). * CONSTANTS[495] is VMCU in component JMCU (flux). * CONSTANTS[496] is KMCU in component JMCU (micromolar). * ALGEBRAIC[174] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[497] is KINH in component JMCU (micromolar). * CONSTANTS[498] is hINH in component JMCU (dimensionless). * STATES[65] is CMT in component CMT (micromolar). * ALGEBRAIC[249] is JIPR in component JIPR (flux). * CONSTANTS[499] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[500] is k_1 in component JIPR (flux). * CONSTANTS[501] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[502] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[503] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[504] is r_2 in component JIPR (flux). * CONSTANTS[505] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[506] is R1 in component JIPR (micromolar). * CONSTANTS[507] is R3 in component JIPR (micromolar). * ALGEBRAIC[175] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[176] is phi_1 in component JIPR (flux). * ALGEBRAIC[177] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[178] is phi3 in component JIPR (first_order_rate_constant). * STATES[66] is H in component JIPR (dimensionless). * CONSTANTS[508] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[509] is h_beta in component JIPR (dimensionless). * CONSTANTS[510] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[511] is K_beta in component JIPR (micromolar). * CONSTANTS[668] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[179] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[67] is zeta in component JIPR (dimensionless). * CONSTANTS[512] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[513] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[514] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[515] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[516] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[517] is P in component model_parameters (micromolar). * ALGEBRAIC[180] is JNCX in component JNCX (flux). * CONSTANTS[518] is VNCX in component JNCX (flux). * CONSTANTS[519] is KNCX in component JNCX (micromolar). * CONSTANTS[712] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[713] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[520] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[521] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[522] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[523] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[714] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[715] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[716] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[524] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[181] is fm in component CMT (dimensionless). * CONSTANTS[525] is Km in component CMT (micromolar). * CONSTANTS[526] is Bm in component CMT (micromolar). * CONSTANTS[527] is KO in component model_parameters (micromolar). * CONSTANTS[528] is Ki in component model_parameters (micromolar). * CONSTANTS[529] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[282] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[283] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[723] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[250] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[251] is I_Na in component I_Na (picoampere). * ALGEBRAIC[190] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[186] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[189] is I_PM in component I_PM (picoampere). * ALGEBRAIC[188] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[530] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[531] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[182] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[183] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[532] is T in component model_parameters (kelvin). * CONSTANTS[533] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[534] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[535] is CO in component model_parameters (micromolar). * CONSTANTS[536] is gNa in component I_Na (picosiemens). * ALGEBRAIC[184] is ENa_PU in component I_Na (millivolt). * CONSTANTS[537] is NO in component model_parameters (micromolar). * STATES[68] is NS1 in component NS1 (micromolar). * CONSTANTS[538] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[185] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[539] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[540] is ENSCC in component model_parameters (millivolt). * CONSTANTS[541] is KNSCC in component model_parameters (micromolar). * CONSTANTS[542] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[187] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[543] is gPM in component I_PM (femtoampere). * CONSTANTS[544] is KPM in component I_PM (micromolar). * CONSTANTS[545] is gNaP in component I_NaP (picosiemens). * CONSTANTS[546] is KNaP in component I_NaP (micromolar). * CONSTANTS[547] is hNaP in component I_NaP (dimensionless). * CONSTANTS[548] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[191] is JSERCA in component JSERCA (flux). * CONSTANTS[549] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[550] is A2 in component JSERCA (dimensionless). * CONSTANTS[551] is A4 in component JSERCA (per_micromolar). * CONSTANTS[552] is A5 in component JSERCA (per_micromolar). * CONSTANTS[553] is A6 in component JSERCA (per_micromolar2). * STATES[69] is CER in component CER (micromolar). * ALGEBRAIC[252] is JMCU in component JMCU (flux). * CONSTANTS[554] is VMCU in component JMCU (flux). * CONSTANTS[555] is KMCU in component JMCU (micromolar). * ALGEBRAIC[192] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[556] is KINH in component JMCU (micromolar). * CONSTANTS[557] is hINH in component JMCU (dimensionless). * STATES[70] is CMT in component CMT (micromolar). * ALGEBRAIC[253] is JIPR in component JIPR (flux). * CONSTANTS[558] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[559] is k_1 in component JIPR (flux). * CONSTANTS[560] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[561] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[562] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[563] is r_2 in component JIPR (flux). * CONSTANTS[564] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[565] is R1 in component JIPR (micromolar). * CONSTANTS[566] is R3 in component JIPR (micromolar). * ALGEBRAIC[193] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[194] is phi_1 in component JIPR (flux). * ALGEBRAIC[195] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[196] is phi3 in component JIPR (first_order_rate_constant). * STATES[71] is H in component JIPR (dimensionless). * CONSTANTS[567] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[568] is h_beta in component JIPR (dimensionless). * CONSTANTS[569] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[570] is K_beta in component JIPR (micromolar). * CONSTANTS[669] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[197] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[72] is zeta in component JIPR (dimensionless). * CONSTANTS[571] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[572] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[573] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[574] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[575] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[576] is P in component model_parameters (micromolar). * ALGEBRAIC[198] is JNCX in component JNCX (flux). * CONSTANTS[577] is VNCX in component JNCX (flux). * CONSTANTS[578] is KNCX in component JNCX (micromolar). * CONSTANTS[718] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[719] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[579] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[580] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[581] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[582] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[720] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[721] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[722] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[583] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[199] is fm in component CMT (dimensionless). * CONSTANTS[584] is Km in component CMT (micromolar). * CONSTANTS[585] is Bm in component CMT (micromolar). * CONSTANTS[586] is KO in component model_parameters (micromolar). * CONSTANTS[587] is Ki in component model_parameters (micromolar). * CONSTANTS[588] is n_PU_base in component model_parameters (dimensionless). * ALGEBRAIC[285] is I_iCa in component PU_membrane (picoampere). * ALGEBRAIC[286] is I_iNa in component PU_membrane (picoampere). * CONSTANTS[729] is alpha_scale in component model_parameters (dimensionless). * ALGEBRAIC[254] is I_Ca in component I_Ca (picoampere). * ALGEBRAIC[255] is I_Na in component I_Na (picoampere). * ALGEBRAIC[208] is I_NaP in component I_NaP (picoampere). * ALGEBRAIC[204] is I_NSCC_Ca in component I_NSCC_Ca (picoampere). * ALGEBRAIC[207] is I_PM in component I_PM (picoampere). * ALGEBRAIC[206] is I_NSCC_Na in component I_NSCC_Na (picoampere). * CONSTANTS[589] is gCa_ in component I_Ca (picosiemens). * CONSTANTS[590] is kCa in component I_Ca (per_millivolt). * ALGEBRAIC[200] is gCa in component I_Ca (picosiemens). * ALGEBRAIC[201] is ECa_PU in component I_Ca (millivolt). * CONSTANTS[591] is T in component model_parameters (kelvin). * CONSTANTS[592] is R in component model_parameters (attojoule_per_zeptomole_kelvin). * CONSTANTS[593] is F in component model_parameters (femtocoulomb_per_zeptomole). * CONSTANTS[594] is CO in component model_parameters (micromolar). * CONSTANTS[595] is gNa in component I_Na (picosiemens). * ALGEBRAIC[202] is ENa_PU in component I_Na (millivolt). * CONSTANTS[596] is NO in component model_parameters (micromolar). * STATES[73] is NS1 in component NS1 (micromolar). * CONSTANTS[597] is gNSCC_Ca_ in component I_NSCC_Ca (picosiemens). * ALGEBRAIC[203] is gNSCC_Ca in component I_NSCC_Ca (picosiemens). * CONSTANTS[598] is hNSCC in component model_parameters (dimensionless). * CONSTANTS[599] is ENSCC in component model_parameters (millivolt). * CONSTANTS[600] is KNSCC in component model_parameters (micromolar). * CONSTANTS[601] is gNSCC_Na_ in component I_NSCC_Na (picosiemens). * ALGEBRAIC[205] is gNSCC_Na in component I_NSCC_Na (picosiemens). * CONSTANTS[602] is gPM in component I_PM (femtoampere). * CONSTANTS[603] is KPM in component I_PM (micromolar). * CONSTANTS[604] is gNaP in component I_NaP (picosiemens). * CONSTANTS[605] is KNaP in component I_NaP (micromolar). * CONSTANTS[606] is hNaP in component I_NaP (dimensionless). * CONSTANTS[607] is ENaP in component I_NaP (millivolt). * ALGEBRAIC[209] is JSERCA in component JSERCA (flux). * CONSTANTS[608] is VSERCA in component JSERCA (first_order_rate_constant). * CONSTANTS[609] is A2 in component JSERCA (dimensionless). * CONSTANTS[610] is A4 in component JSERCA (per_micromolar). * CONSTANTS[611] is A5 in component JSERCA (per_micromolar). * CONSTANTS[612] is A6 in component JSERCA (per_micromolar2). * STATES[74] is CER in component CER (micromolar). * ALGEBRAIC[256] is JMCU in component JMCU (flux). * CONSTANTS[613] is VMCU in component JMCU (flux). * CONSTANTS[614] is KMCU in component JMCU (micromolar). * ALGEBRAIC[210] is epsilon_INH in component JMCU (dimensionless). * CONSTANTS[615] is KINH in component JMCU (micromolar). * CONSTANTS[616] is hINH in component JMCU (dimensionless). * STATES[75] is CMT in component CMT (micromolar). * ALGEBRAIC[257] is JIPR in component JIPR (flux). * CONSTANTS[617] is kIPR in component JIPR (first_order_rate_constant). * CONSTANTS[618] is k_1 in component JIPR (flux). * CONSTANTS[619] is k1 in component JIPR (first_order_rate_constant). * CONSTANTS[620] is k2 in component JIPR (first_order_rate_constant). * CONSTANTS[621] is r2 in component JIPR (first_order_rate_constant). * CONSTANTS[622] is r_2 in component JIPR (flux). * CONSTANTS[623] is r4 in component JIPR (first_order_rate_constant). * CONSTANTS[624] is R1 in component JIPR (micromolar). * CONSTANTS[625] is R3 in component JIPR (micromolar). * ALGEBRAIC[211] is phi1 in component JIPR (first_order_rate_constant). * ALGEBRAIC[212] is phi_1 in component JIPR (flux). * ALGEBRAIC[213] is phi2 in component JIPR (first_order_rate_constant). * ALGEBRAIC[214] is phi3 in component JIPR (first_order_rate_constant). * STATES[76] is H in component JIPR (dimensionless). * CONSTANTS[626] is g_beta in component JIPR (first_order_rate_constant). * CONSTANTS[627] is h_beta in component JIPR (dimensionless). * CONSTANTS[628] is g_alpha in component JIPR (first_order_rate_constant). * CONSTANTS[629] is K_beta in component JIPR (micromolar). * CONSTANTS[670] is alpha_zeta in component JIPR (first_order_rate_constant). * ALGEBRAIC[215] is beta_zeta in component JIPR (first_order_rate_constant). * STATES[77] is zeta in component JIPR (dimensionless). * CONSTANTS[630] is K_phi3_act in component JIPR (micromolar). * CONSTANTS[631] is K_phi3_inh in component JIPR (micromolar). * CONSTANTS[632] is h_phi3_act in component JIPR (dimensionless). * CONSTANTS[633] is h_phi3_inh in component JIPR (dimensionless). * CONSTANTS[634] is g_phi3 in component JIPR (first_order_rate_constant). * CONSTANTS[635] is P in component model_parameters (micromolar). * ALGEBRAIC[216] is JNCX in component JNCX (flux). * CONSTANTS[636] is VNCX in component JNCX (flux). * CONSTANTS[637] is KNCX in component JNCX (micromolar). * CONSTANTS[724] is lambda_MT_S1 in component CS1 (dimensionless). * CONSTANTS[725] is lambda_ER_S1 in component CS1 (dimensionless). * CONSTANTS[638] is delta_SPU in component model_parameters (micromolar_per_coulomb). * CONSTANTS[639] is gamma_S1 in component model_parameters (dimensionless). * CONSTANTS[640] is gamma_MT in component model_parameters (dimensionless). * CONSTANTS[641] is gamma_ER in component model_parameters (dimensionless). * CONSTANTS[726] is lambda_MT_S2 in component CS2 (dimensionless). * CONSTANTS[727] is lambda_ER_S2 in component CS2 (dimensionless). * CONSTANTS[728] is lambda_S1_S2 in component CS2 (dimensionless). * CONSTANTS[642] is gamma_S2 in component model_parameters (dimensionless). * ALGEBRAIC[217] is fm in component CMT (dimensionless). * CONSTANTS[643] is Km in component CMT (micromolar). * CONSTANTS[644] is Bm in component CMT (micromolar). * CONSTANTS[645] is KO in component model_parameters (micromolar). * CONSTANTS[646] is Ki in component model_parameters (micromolar). * CONSTANTS[647] is n_PU_base in component model_parameters (dimensionless). * RATES[0] is d/dt OCaT in component I_CaT (dimensionless). * RATES[2] is d/dt dT in component I_CaT_d_gate (dimensionless). * RATES[3] is d/dt fT in component I_CaT_f_gate (dimensionless). * RATES[5] is d/dt dv1_1 in component I_Kv1_1_d_gate (dimensionless). * RATES[6] is d/dt fv1_1 in component I_Kv1_1_f_gate (dimensionless). * RATES[7] is d/dt dERG in component I_KERG_d_gate (dimensionless). * RATES[1] is d/dt Vm in component membrane (millivolt). * RATES[4] is d/dt CCy in component CCy (micromolar). * RATES[31] is d/dt H in component JIPR (dimensionless). * RATES[32] is d/dt zeta in component JIPR (dimensionless). * RATES[18] is d/dt CS1 in component CS1 (micromolar). * RATES[8] is d/dt CS2 in component CS2 (micromolar). * RATES[29] is d/dt CER in component CER (micromolar). * RATES[30] is d/dt CMT in component CMT (micromolar). * RATES[28] is d/dt NS1 in component NS1 (micromolar). * RATES[36] is d/dt H in component JIPR (dimensionless). * RATES[37] is d/dt zeta in component JIPR (dimensionless). * RATES[19] is d/dt CS1 in component CS1 (micromolar). * RATES[9] is d/dt CS2 in component CS2 (micromolar). * RATES[34] is d/dt CER in component CER (micromolar). * RATES[35] is d/dt CMT in component CMT (micromolar). * RATES[33] is d/dt NS1 in component NS1 (micromolar). * RATES[41] is d/dt H in component JIPR (dimensionless). * RATES[42] is d/dt zeta in component JIPR (dimensionless). * RATES[20] is d/dt CS1 in component CS1 (micromolar). * RATES[10] is d/dt CS2 in component CS2 (micromolar). * RATES[39] is d/dt CER in component CER (micromolar). * RATES[40] is d/dt CMT in component CMT (micromolar). * RATES[38] is d/dt NS1 in component NS1 (micromolar). * RATES[46] is d/dt H in component JIPR (dimensionless). * RATES[47] is d/dt zeta in component JIPR (dimensionless). * RATES[21] is d/dt CS1 in component CS1 (micromolar). * RATES[11] is d/dt CS2 in component CS2 (micromolar). * RATES[44] is d/dt CER in component CER (micromolar). * RATES[45] is d/dt CMT in component CMT (micromolar). * RATES[43] is d/dt NS1 in component NS1 (micromolar). * RATES[51] is d/dt H in component JIPR (dimensionless). * RATES[52] is d/dt zeta in component JIPR (dimensionless). * RATES[22] is d/dt CS1 in component CS1 (micromolar). * RATES[12] is d/dt CS2 in component CS2 (micromolar). * RATES[49] is d/dt CER in component CER (micromolar). * RATES[50] is d/dt CMT in component CMT (micromolar). * RATES[48] is d/dt NS1 in component NS1 (micromolar). * RATES[56] is d/dt H in component JIPR (dimensionless). * RATES[57] is d/dt zeta in component JIPR (dimensionless). * RATES[23] is d/dt CS1 in component CS1 (micromolar). * RATES[13] is d/dt CS2 in component CS2 (micromolar). * RATES[54] is d/dt CER in component CER (micromolar). * RATES[55] is d/dt CMT in component CMT (micromolar). * RATES[53] is d/dt NS1 in component NS1 (micromolar). * RATES[61] is d/dt H in component JIPR (dimensionless). * RATES[62] is d/dt zeta in component JIPR (dimensionless). * RATES[24] is d/dt CS1 in component CS1 (micromolar). * RATES[14] is d/dt CS2 in component CS2 (micromolar). * RATES[59] is d/dt CER in component CER (micromolar). * RATES[60] is d/dt CMT in component CMT (micromolar). * RATES[58] is d/dt NS1 in component NS1 (micromolar). * RATES[66] is d/dt H in component JIPR (dimensionless). * RATES[67] is d/dt zeta in component JIPR (dimensionless). * RATES[25] is d/dt CS1 in component CS1 (micromolar). * RATES[15] is d/dt CS2 in component CS2 (micromolar). * RATES[64] is d/dt CER in component CER (micromolar). * RATES[65] is d/dt CMT in component CMT (micromolar). * RATES[63] is d/dt NS1 in component NS1 (micromolar). * RATES[71] is d/dt H in component JIPR (dimensionless). * RATES[72] is d/dt zeta in component JIPR (dimensionless). * RATES[26] is d/dt CS1 in component CS1 (micromolar). * RATES[16] is d/dt CS2 in component CS2 (micromolar). * RATES[69] is d/dt CER in component CER (micromolar). * RATES[70] is d/dt CMT in component CMT (micromolar). * RATES[68] is d/dt NS1 in component NS1 (micromolar). * RATES[76] is d/dt H in component JIPR (dimensionless). * RATES[77] is d/dt zeta in component JIPR (dimensionless). * RATES[27] is d/dt CS1 in component CS1 (micromolar). * RATES[17] is d/dt CS2 in component CS2 (micromolar). * RATES[74] is d/dt CER in component CER (micromolar). * RATES[75] is d/dt CMT in component CMT (micromolar). * RATES[73] is d/dt NS1 in component NS1 (micromolar). * There are a total of 0 condition variables. */ void initConsts(double* CONSTANTS, double* RATES, double *STATES) { CONSTANTS[0] = 800.0; CONSTANTS[1] = 17.0; CONSTANTS[2] = 240; CONSTANTS[3] = 72; STATES[0] = 0; STATES[1] = -70.0; STATES[2] = 0.010; STATES[3] = 0.001; CONSTANTS[4] = 0.0025; CONSTANTS[5] = -0.60; CONSTANTS[6] = -53; CONSTANTS[7] = 0.019; CONSTANTS[8] = 6.75; CONSTANTS[9] = 2; CONSTANTS[10] = -40; CONSTANTS[11] = 1; CONSTANTS[12] = -65; CONSTANTS[13] = 100.0; CONSTANTS[14] = 1.0; STATES[4] = 0.12; CONSTANTS[15] = 10.0; STATES[5] = 0.000; STATES[6] = 1.0; CONSTANTS[16] = 1000.0; CONSTANTS[17] = 0.80; CONSTANTS[18] = -0.13; CONSTANTS[19] = 25; CONSTANTS[20] = 333.0; CONSTANTS[21] = 0.10; CONSTANTS[22] = 0.23; CONSTANTS[23] = 44.8; CONSTANTS[24] = 6; STATES[7] = 0.000; CONSTANTS[25] = 1000.0; CONSTANTS[26] = 0.70; CONSTANTS[27] = -0.56; CONSTANTS[28] = 30; CONSTANTS[29] = 13.5; CONSTANTS[30] = -70.0; CONSTANTS[31] = 0.80; CONSTANTS[32] = 0.0; CONSTANTS[33] = 20.0; CONSTANTS[34] = 310.16; CONSTANTS[35] = 8.314E-3; CONSTANTS[36] = 0.09649; CONSTANTS[37] = 1.8E3; CONSTANTS[38] = 5400.0; CONSTANTS[39] = 145E3; CONSTANTS[40] = 1.0E-3; CONSTANTS[41] = 0.002; CONSTANTS[42] = 0.000; CONSTANTS[43] = 0.3361; CONSTANTS[44] = 0.3658; CONSTANTS[45] = 0.4357; CONSTANTS[46] = 0.5351; CONSTANTS[47] = 0.6366; CONSTANTS[48] = 0.7386; CONSTANTS[49] = 0.8361; CONSTANTS[50] = 0.9320; CONSTANTS[51] = 1.0185; STATES[8] = 0.023; STATES[9] = 0.023; STATES[10] = 0.023; STATES[11] = 0.023; STATES[12] = 0.023; STATES[13] = 0.023; STATES[14] = 0.023; STATES[15] = 0.023; STATES[16] = 0.023; STATES[17] = 0.023; CONSTANTS[52] = 0.30; CONSTANTS[53] = 0.24; CONSTANTS[54] = 10.0; STATES[18] = 0.120; STATES[19] = 0.120; STATES[20] = 0.120; STATES[21] = 0.120; STATES[22] = 0.120; STATES[23] = 0.120; STATES[24] = 0.120; STATES[25] = 0.120; STATES[26] = 0.120; STATES[27] = 0.120; CONSTANTS[55] = 1.30; CONSTANTS[56] = 0.12; CONSTANTS[57] = 1.0; CONSTANTS[58] = 0.074; CONSTANTS[59] = 0.013; CONSTANTS[60] = 310.16; CONSTANTS[61] = 8.314E-3; CONSTANTS[62] = 0.09649; CONSTANTS[63] = 1.8E3; CONSTANTS[64] = 13.5; CONSTANTS[65] = 140.0E3; STATES[28] = 1.01E4; CONSTANTS[66] = 0.10; CONSTANTS[67] = 3.0; CONSTANTS[68] = 0.0; CONSTANTS[69] = 0.12; CONSTANTS[70] = 160.0; CONSTANTS[71] = 675.0; CONSTANTS[72] = 1.0; CONSTANTS[73] = 187.5; CONSTANTS[74] = 1.0E4; CONSTANTS[75] = 4.0; CONSTANTS[76] = 10.0; CONSTANTS[77] = 1.0E5; CONSTANTS[78] = 6E-4; CONSTANTS[79] = 3.57; CONSTANTS[80] = 2.7E-5; CONSTANTS[81] = 2.31E-5; STATES[29] = 200.0; CONSTANTS[82] = 800.0; CONSTANTS[83] = 10.0; CONSTANTS[84] = 10.0; CONSTANTS[85] = 4.0; STATES[30] = 0.200; CONSTANTS[86] = 2000.0; CONSTANTS[87] = 6.4; CONSTANTS[88] = 0.0; CONSTANTS[89] = 4.0; CONSTANTS[90] = 250.0; CONSTANTS[91] = 0.0; CONSTANTS[92] = 750.0; CONSTANTS[93] = 36.0; CONSTANTS[94] = 300.0; STATES[31] = 0.200; CONSTANTS[95] = 1500.0; CONSTANTS[96] = 4.0; CONSTANTS[97] = 0.85; CONSTANTS[98] = 0.35; STATES[32] = 0.300; CONSTANTS[99] = 0.1; CONSTANTS[100] = 0.5; CONSTANTS[101] = 3.0; CONSTANTS[102] = 3.0; CONSTANTS[103] = 4.5; CONSTANTS[104] = 1.0; CONSTANTS[105] = 3.0; CONSTANTS[106] = 0.3; CONSTANTS[107] = 18.5; CONSTANTS[108] = 100.0; CONSTANTS[109] = 200.0; CONSTANTS[110] = 20.0; CONSTANTS[111] = 1.0; CONSTANTS[112] = 0.01; CONSTANTS[113] = 100.0; CONSTANTS[114] = 5400.0; CONSTANTS[115] = 145E3; CONSTANTS[116] = 50.0; CONSTANTS[117] = 0.074; CONSTANTS[118] = 0.013; CONSTANTS[119] = 310.16; CONSTANTS[120] = 8.314E-3; CONSTANTS[121] = 0.09649; CONSTANTS[122] = 1.8E3; CONSTANTS[123] = 13.5; CONSTANTS[124] = 140.0E3; STATES[33] = 1.01E4; CONSTANTS[125] = 0.10; CONSTANTS[126] = 3.0; CONSTANTS[127] = 0.0; CONSTANTS[128] = 0.12; CONSTANTS[129] = 160.0; CONSTANTS[130] = 675.0; CONSTANTS[131] = 1.0; CONSTANTS[132] = 187.5; CONSTANTS[133] = 1.0E4; CONSTANTS[134] = 4.0; CONSTANTS[135] = 10.0; CONSTANTS[136] = 1.0E5; CONSTANTS[137] = 6E-4; CONSTANTS[138] = 3.57; CONSTANTS[139] = 2.7E-5; CONSTANTS[140] = 2.31E-5; STATES[34] = 200.0; CONSTANTS[141] = 800.0; CONSTANTS[142] = 10.0; CONSTANTS[143] = 10.0; CONSTANTS[144] = 4.0; STATES[35] = 0.200; CONSTANTS[145] = 2000.0; CONSTANTS[146] = 6.4; CONSTANTS[147] = 0.0; CONSTANTS[148] = 4.0; CONSTANTS[149] = 250.0; CONSTANTS[150] = 0.0; CONSTANTS[151] = 750.0; CONSTANTS[152] = 36.0; CONSTANTS[153] = 300.0; STATES[36] = 0.200; CONSTANTS[154] = 1500.0; CONSTANTS[155] = 4.0; CONSTANTS[156] = 0.85; CONSTANTS[157] = 0.35; STATES[37] = 0.300; CONSTANTS[158] = 0.1; CONSTANTS[159] = 0.5; CONSTANTS[160] = 3.0; CONSTANTS[161] = 3.0; CONSTANTS[162] = 4.5; CONSTANTS[163] = 1.0; CONSTANTS[164] = 3.0; CONSTANTS[165] = 0.3; CONSTANTS[166] = 18.5; CONSTANTS[167] = 100.0; CONSTANTS[168] = 200.0; CONSTANTS[169] = 20.0; CONSTANTS[170] = 1.0; CONSTANTS[171] = 0.01; CONSTANTS[172] = 100.0; CONSTANTS[173] = 5400.0; CONSTANTS[174] = 145E3; CONSTANTS[175] = 50.0; CONSTANTS[176] = 0.074; CONSTANTS[177] = 0.013; CONSTANTS[178] = 310.16; CONSTANTS[179] = 8.314E-3; CONSTANTS[180] = 0.09649; CONSTANTS[181] = 1.8E3; CONSTANTS[182] = 13.5; CONSTANTS[183] = 140.0E3; STATES[38] = 1.01E4; CONSTANTS[184] = 0.10; CONSTANTS[185] = 3.0; CONSTANTS[186] = 0.0; CONSTANTS[187] = 0.12; CONSTANTS[188] = 160.0; CONSTANTS[189] = 675.0; CONSTANTS[190] = 1.0; CONSTANTS[191] = 187.5; CONSTANTS[192] = 1.0E4; CONSTANTS[193] = 4.0; CONSTANTS[194] = 10.0; CONSTANTS[195] = 1.0E5; CONSTANTS[196] = 6E-4; CONSTANTS[197] = 3.57; CONSTANTS[198] = 2.7E-5; CONSTANTS[199] = 2.31E-5; STATES[39] = 200.0; CONSTANTS[200] = 800.0; CONSTANTS[201] = 10.0; CONSTANTS[202] = 10.0; CONSTANTS[203] = 4.0; STATES[40] = 0.200; CONSTANTS[204] = 2000.0; CONSTANTS[205] = 6.4; CONSTANTS[206] = 0.0; CONSTANTS[207] = 4.0; CONSTANTS[208] = 250.0; CONSTANTS[209] = 0.0; CONSTANTS[210] = 750.0; CONSTANTS[211] = 36.0; CONSTANTS[212] = 300.0; STATES[41] = 0.200; CONSTANTS[213] = 1500.0; CONSTANTS[214] = 4.0; CONSTANTS[215] = 0.85; CONSTANTS[216] = 0.35; STATES[42] = 0.300; CONSTANTS[217] = 0.1; CONSTANTS[218] = 0.5; CONSTANTS[219] = 3.0; CONSTANTS[220] = 3.0; CONSTANTS[221] = 4.5; CONSTANTS[222] = 1.0; CONSTANTS[223] = 3.0; CONSTANTS[224] = 0.3; CONSTANTS[225] = 18.5; CONSTANTS[226] = 100.0; CONSTANTS[227] = 200.0; CONSTANTS[228] = 20.0; CONSTANTS[229] = 1.0; CONSTANTS[230] = 0.01; CONSTANTS[231] = 100.0; CONSTANTS[232] = 5400.0; CONSTANTS[233] = 145E3; CONSTANTS[234] = 50.0; CONSTANTS[235] = 0.074; CONSTANTS[236] = 0.013; CONSTANTS[237] = 310.16; CONSTANTS[238] = 8.314E-3; CONSTANTS[239] = 0.09649; CONSTANTS[240] = 1.8E3; CONSTANTS[241] = 13.5; CONSTANTS[242] = 140.0E3; STATES[43] = 1.01E4; CONSTANTS[243] = 0.10; CONSTANTS[244] = 3.0; CONSTANTS[245] = 0.0; CONSTANTS[246] = 0.12; CONSTANTS[247] = 160.0; CONSTANTS[248] = 675.0; CONSTANTS[249] = 1.0; CONSTANTS[250] = 187.5; CONSTANTS[251] = 1.0E4; CONSTANTS[252] = 4.0; CONSTANTS[253] = 10.0; CONSTANTS[254] = 1.0E5; CONSTANTS[255] = 6E-4; CONSTANTS[256] = 3.57; CONSTANTS[257] = 2.7E-5; CONSTANTS[258] = 2.31E-5; STATES[44] = 200.0; CONSTANTS[259] = 800.0; CONSTANTS[260] = 10.0; CONSTANTS[261] = 10.0; CONSTANTS[262] = 4.0; STATES[45] = 0.200; CONSTANTS[263] = 2000.0; CONSTANTS[264] = 6.4; CONSTANTS[265] = 0.0; CONSTANTS[266] = 4.0; CONSTANTS[267] = 250.0; CONSTANTS[268] = 0.0; CONSTANTS[269] = 750.0; CONSTANTS[270] = 36.0; CONSTANTS[271] = 300.0; STATES[46] = 0.200; CONSTANTS[272] = 1500.0; CONSTANTS[273] = 4.0; CONSTANTS[274] = 0.85; CONSTANTS[275] = 0.35; STATES[47] = 0.300; CONSTANTS[276] = 0.1; CONSTANTS[277] = 0.5; CONSTANTS[278] = 3.0; CONSTANTS[279] = 3.0; CONSTANTS[280] = 4.5; CONSTANTS[281] = 1.0; CONSTANTS[282] = 3.0; CONSTANTS[283] = 0.3; CONSTANTS[284] = 18.5; CONSTANTS[285] = 100.0; CONSTANTS[286] = 200.0; CONSTANTS[287] = 20.0; CONSTANTS[288] = 1.0; CONSTANTS[289] = 0.01; CONSTANTS[290] = 100.0; CONSTANTS[291] = 5400.0; CONSTANTS[292] = 145E3; CONSTANTS[293] = 50.0; CONSTANTS[294] = 0.074; CONSTANTS[295] = 0.013; CONSTANTS[296] = 310.16; CONSTANTS[297] = 8.314E-3; CONSTANTS[298] = 0.09649; CONSTANTS[299] = 1.8E3; CONSTANTS[300] = 13.5; CONSTANTS[301] = 140.0E3; STATES[48] = 1.01E4; CONSTANTS[302] = 0.10; CONSTANTS[303] = 3.0; CONSTANTS[304] = 0.0; CONSTANTS[305] = 0.12; CONSTANTS[306] = 160.0; CONSTANTS[307] = 675.0; CONSTANTS[308] = 1.0; CONSTANTS[309] = 187.5; CONSTANTS[310] = 1.0E4; CONSTANTS[311] = 4.0; CONSTANTS[312] = 10.0; CONSTANTS[313] = 1.0E5; CONSTANTS[314] = 6E-4; CONSTANTS[315] = 3.57; CONSTANTS[316] = 2.7E-5; CONSTANTS[317] = 2.31E-5; STATES[49] = 200.0; CONSTANTS[318] = 800.0; CONSTANTS[319] = 10.0; CONSTANTS[320] = 10.0; CONSTANTS[321] = 4.0; STATES[50] = 0.200; CONSTANTS[322] = 2000.0; CONSTANTS[323] = 6.4; CONSTANTS[324] = 0.0; CONSTANTS[325] = 4.0; CONSTANTS[326] = 250.0; CONSTANTS[327] = 0.0; CONSTANTS[328] = 750.0; CONSTANTS[329] = 36.0; CONSTANTS[330] = 300.0; STATES[51] = 0.200; CONSTANTS[331] = 1500.0; CONSTANTS[332] = 4.0; CONSTANTS[333] = 0.85; CONSTANTS[334] = 0.35; STATES[52] = 0.300; CONSTANTS[335] = 0.1; CONSTANTS[336] = 0.5; CONSTANTS[337] = 3.0; CONSTANTS[338] = 3.0; CONSTANTS[339] = 4.5; CONSTANTS[340] = 1.0; CONSTANTS[341] = 3.0; CONSTANTS[342] = 0.3; CONSTANTS[343] = 18.5; CONSTANTS[344] = 100.0; CONSTANTS[345] = 200.0; CONSTANTS[346] = 20.0; CONSTANTS[347] = 1.0; CONSTANTS[348] = 0.01; CONSTANTS[349] = 100.0; CONSTANTS[350] = 5400.0; CONSTANTS[351] = 145E3; CONSTANTS[352] = 50.0; CONSTANTS[353] = 0.074; CONSTANTS[354] = 0.013; CONSTANTS[355] = 310.16; CONSTANTS[356] = 8.314E-3; CONSTANTS[357] = 0.09649; CONSTANTS[358] = 1.8E3; CONSTANTS[359] = 13.5; CONSTANTS[360] = 140.0E3; STATES[53] = 1.01E4; CONSTANTS[361] = 0.10; CONSTANTS[362] = 3.0; CONSTANTS[363] = 0.0; CONSTANTS[364] = 0.12; CONSTANTS[365] = 160.0; CONSTANTS[366] = 675.0; CONSTANTS[367] = 1.0; CONSTANTS[368] = 187.5; CONSTANTS[369] = 1.0E4; CONSTANTS[370] = 4.0; CONSTANTS[371] = 10.0; CONSTANTS[372] = 1.0E5; CONSTANTS[373] = 6E-4; CONSTANTS[374] = 3.57; CONSTANTS[375] = 2.7E-5; CONSTANTS[376] = 2.31E-5; STATES[54] = 200.0; CONSTANTS[377] = 800.0; CONSTANTS[378] = 10.0; CONSTANTS[379] = 10.0; CONSTANTS[380] = 4.0; STATES[55] = 0.200; CONSTANTS[381] = 2000.0; CONSTANTS[382] = 6.4; CONSTANTS[383] = 0.0; CONSTANTS[384] = 4.0; CONSTANTS[385] = 250.0; CONSTANTS[386] = 0.0; CONSTANTS[387] = 750.0; CONSTANTS[388] = 36.0; CONSTANTS[389] = 300.0; STATES[56] = 0.200; CONSTANTS[390] = 1500.0; CONSTANTS[391] = 4.0; CONSTANTS[392] = 0.85; CONSTANTS[393] = 0.35; STATES[57] = 0.300; CONSTANTS[394] = 0.1; CONSTANTS[395] = 0.5; CONSTANTS[396] = 3.0; CONSTANTS[397] = 3.0; CONSTANTS[398] = 4.5; CONSTANTS[399] = 1.0; CONSTANTS[400] = 3.0; CONSTANTS[401] = 0.3; CONSTANTS[402] = 18.5; CONSTANTS[403] = 100.0; CONSTANTS[404] = 200.0; CONSTANTS[405] = 20.0; CONSTANTS[406] = 1.0; CONSTANTS[407] = 0.01; CONSTANTS[408] = 100.0; CONSTANTS[409] = 5400.0; CONSTANTS[410] = 145E3; CONSTANTS[411] = 50.0; CONSTANTS[412] = 0.074; CONSTANTS[413] = 0.013; CONSTANTS[414] = 310.16; CONSTANTS[415] = 8.314E-3; CONSTANTS[416] = 0.09649; CONSTANTS[417] = 1.8E3; CONSTANTS[418] = 13.5; CONSTANTS[419] = 140.0E3; STATES[58] = 1.01E4; CONSTANTS[420] = 0.10; CONSTANTS[421] = 3.0; CONSTANTS[422] = 0.0; CONSTANTS[423] = 0.12; CONSTANTS[424] = 160.0; CONSTANTS[425] = 675.0; CONSTANTS[426] = 1.0; CONSTANTS[427] = 187.5; CONSTANTS[428] = 1.0E4; CONSTANTS[429] = 4.0; CONSTANTS[430] = 10.0; CONSTANTS[431] = 1.0E5; CONSTANTS[432] = 6E-4; CONSTANTS[433] = 3.57; CONSTANTS[434] = 2.7E-5; CONSTANTS[435] = 2.31E-5; STATES[59] = 200.0; CONSTANTS[436] = 800.0; CONSTANTS[437] = 10.0; CONSTANTS[438] = 10.0; CONSTANTS[439] = 4.0; STATES[60] = 0.200; CONSTANTS[440] = 2000.0; CONSTANTS[441] = 6.4; CONSTANTS[442] = 0.0; CONSTANTS[443] = 4.0; CONSTANTS[444] = 250.0; CONSTANTS[445] = 0.0; CONSTANTS[446] = 750.0; CONSTANTS[447] = 36.0; CONSTANTS[448] = 300.0; STATES[61] = 0.200; CONSTANTS[449] = 1500.0; CONSTANTS[450] = 4.0; CONSTANTS[451] = 0.85; CONSTANTS[452] = 0.35; STATES[62] = 0.300; CONSTANTS[453] = 0.1; CONSTANTS[454] = 0.5; CONSTANTS[455] = 3.0; CONSTANTS[456] = 3.0; CONSTANTS[457] = 4.5; CONSTANTS[458] = 1.0; CONSTANTS[459] = 3.0; CONSTANTS[460] = 0.3; CONSTANTS[461] = 18.5; CONSTANTS[462] = 100.0; CONSTANTS[463] = 200.0; CONSTANTS[464] = 20.0; CONSTANTS[465] = 1.0; CONSTANTS[466] = 0.01; CONSTANTS[467] = 100.0; CONSTANTS[468] = 5400.0; CONSTANTS[469] = 145E3; CONSTANTS[470] = 50.0; CONSTANTS[471] = 0.074; CONSTANTS[472] = 0.013; CONSTANTS[473] = 310.16; CONSTANTS[474] = 8.314E-3; CONSTANTS[475] = 0.09649; CONSTANTS[476] = 1.8E3; CONSTANTS[477] = 13.5; CONSTANTS[478] = 140.0E3; STATES[63] = 1.01E4; CONSTANTS[479] = 0.10; CONSTANTS[480] = 3.0; CONSTANTS[481] = 0.0; CONSTANTS[482] = 0.12; CONSTANTS[483] = 160.0; CONSTANTS[484] = 675.0; CONSTANTS[485] = 1.0; CONSTANTS[486] = 187.5; CONSTANTS[487] = 1.0E4; CONSTANTS[488] = 4.0; CONSTANTS[489] = 10.0; CONSTANTS[490] = 1.0E5; CONSTANTS[491] = 6E-4; CONSTANTS[492] = 3.57; CONSTANTS[493] = 2.7E-5; CONSTANTS[494] = 2.31E-5; STATES[64] = 200.0; CONSTANTS[495] = 800.0; CONSTANTS[496] = 10.0; CONSTANTS[497] = 10.0; CONSTANTS[498] = 4.0; STATES[65] = 0.200; CONSTANTS[499] = 2000.0; CONSTANTS[500] = 6.4; CONSTANTS[501] = 0.0; CONSTANTS[502] = 4.0; CONSTANTS[503] = 250.0; CONSTANTS[504] = 0.0; CONSTANTS[505] = 750.0; CONSTANTS[506] = 36.0; CONSTANTS[507] = 300.0; STATES[66] = 0.200; CONSTANTS[508] = 1500.0; CONSTANTS[509] = 4.0; CONSTANTS[510] = 0.85; CONSTANTS[511] = 0.35; STATES[67] = 0.300; CONSTANTS[512] = 0.1; CONSTANTS[513] = 0.5; CONSTANTS[514] = 3.0; CONSTANTS[515] = 3.0; CONSTANTS[516] = 4.5; CONSTANTS[517] = 1.0; CONSTANTS[518] = 3.0; CONSTANTS[519] = 0.3; CONSTANTS[520] = 18.5; CONSTANTS[521] = 100.0; CONSTANTS[522] = 200.0; CONSTANTS[523] = 20.0; CONSTANTS[524] = 1.0; CONSTANTS[525] = 0.01; CONSTANTS[526] = 100.0; CONSTANTS[527] = 5400.0; CONSTANTS[528] = 145E3; CONSTANTS[529] = 50.0; CONSTANTS[530] = 0.074; CONSTANTS[531] = 0.013; CONSTANTS[532] = 310.16; CONSTANTS[533] = 8.314E-3; CONSTANTS[534] = 0.09649; CONSTANTS[535] = 1.8E3; CONSTANTS[536] = 13.5; CONSTANTS[537] = 140.0E3; STATES[68] = 1.01E4; CONSTANTS[538] = 0.10; CONSTANTS[539] = 3.0; CONSTANTS[540] = 0.0; CONSTANTS[541] = 0.12; CONSTANTS[542] = 160.0; CONSTANTS[543] = 675.0; CONSTANTS[544] = 1.0; CONSTANTS[545] = 187.5; CONSTANTS[546] = 1.0E4; CONSTANTS[547] = 4.0; CONSTANTS[548] = 10.0; CONSTANTS[549] = 1.0E5; CONSTANTS[550] = 6E-4; CONSTANTS[551] = 3.57; CONSTANTS[552] = 2.7E-5; CONSTANTS[553] = 2.31E-5; STATES[69] = 200.0; CONSTANTS[554] = 800.0; CONSTANTS[555] = 10.0; CONSTANTS[556] = 10.0; CONSTANTS[557] = 4.0; STATES[70] = 0.200; CONSTANTS[558] = 2000.0; CONSTANTS[559] = 6.4; CONSTANTS[560] = 0.0; CONSTANTS[561] = 4.0; CONSTANTS[562] = 250.0; CONSTANTS[563] = 0.0; CONSTANTS[564] = 750.0; CONSTANTS[565] = 36.0; CONSTANTS[566] = 300.0; STATES[71] = 0.200; CONSTANTS[567] = 1500.0; CONSTANTS[568] = 4.0; CONSTANTS[569] = 0.85; CONSTANTS[570] = 0.35; STATES[72] = 0.300; CONSTANTS[571] = 0.1; CONSTANTS[572] = 0.5; CONSTANTS[573] = 3.0; CONSTANTS[574] = 3.0; CONSTANTS[575] = 4.5; CONSTANTS[576] = 1.0; CONSTANTS[577] = 3.0; CONSTANTS[578] = 0.3; CONSTANTS[579] = 18.5; CONSTANTS[580] = 100.0; CONSTANTS[581] = 200.0; CONSTANTS[582] = 20.0; CONSTANTS[583] = 1.0; CONSTANTS[584] = 0.01; CONSTANTS[585] = 100.0; CONSTANTS[586] = 5400.0; CONSTANTS[587] = 145E3; CONSTANTS[588] = 50.0; CONSTANTS[589] = 0.074; CONSTANTS[590] = 0.013; CONSTANTS[591] = 310.16; CONSTANTS[592] = 8.314E-3; CONSTANTS[593] = 0.09649; CONSTANTS[594] = 1.8E3; CONSTANTS[595] = 13.5; CONSTANTS[596] = 140.0E3; STATES[73] = 1.01E4; CONSTANTS[597] = 0.10; CONSTANTS[598] = 3.0; CONSTANTS[599] = 0.0; CONSTANTS[600] = 0.12; CONSTANTS[601] = 160.0; CONSTANTS[602] = 675.0; CONSTANTS[603] = 1.0; CONSTANTS[604] = 187.5; CONSTANTS[605] = 1.0E4; CONSTANTS[606] = 4.0; CONSTANTS[607] = 10.0; CONSTANTS[608] = 1.0E5; CONSTANTS[609] = 6E-4; CONSTANTS[610] = 3.57; CONSTANTS[611] = 2.7E-5; CONSTANTS[612] = 2.31E-5; STATES[74] = 200.0; CONSTANTS[613] = 800.0; CONSTANTS[614] = 10.0; CONSTANTS[615] = 10.0; CONSTANTS[616] = 4.0; STATES[75] = 0.200; CONSTANTS[617] = 2000.0; CONSTANTS[618] = 6.4; CONSTANTS[619] = 0.0; CONSTANTS[620] = 4.0; CONSTANTS[621] = 250.0; CONSTANTS[622] = 0.0; CONSTANTS[623] = 750.0; CONSTANTS[624] = 36.0; CONSTANTS[625] = 300.0; STATES[76] = 0.200; CONSTANTS[626] = 1500.0; CONSTANTS[627] = 4.0; CONSTANTS[628] = 0.85; CONSTANTS[629] = 0.35; STATES[77] = 0.300; CONSTANTS[630] = 0.1; CONSTANTS[631] = 0.5; CONSTANTS[632] = 3.0; CONSTANTS[633] = 3.0; CONSTANTS[634] = 4.5; CONSTANTS[635] = 1.0; CONSTANTS[636] = 3.0; CONSTANTS[637] = 0.3; CONSTANTS[638] = 18.5; CONSTANTS[639] = 100.0; CONSTANTS[640] = 200.0; CONSTANTS[641] = 20.0; CONSTANTS[642] = 1.0; CONSTANTS[643] = 0.01; CONSTANTS[644] = 100.0; CONSTANTS[645] = 5400.0; CONSTANTS[646] = 145E3; CONSTANTS[647] = 50.0; CONSTANTS[648] = CONSTANTS[4]; CONSTANTS[649] = (( CONSTANTS[35]*CONSTANTS[34])/CONSTANTS[36])*log(CONSTANTS[38]/CONSTANTS[39]); CONSTANTS[650] = CONSTANTS[109]/CONSTANTS[108]; CONSTANTS[651] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((1.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[652] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((2.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[653] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((3.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[654] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((4.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[655] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((5.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[656] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((6.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[657] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((7.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[658] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((8.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[659] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((9.00000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[660] = CONSTANTS[52]+ (CONSTANTS[53] - CONSTANTS[52])*((10.0000 - 1.00000)/(CONSTANTS[54] - 1.00000)); CONSTANTS[661] = CONSTANTS[97]; CONSTANTS[662] = CONSTANTS[156]; CONSTANTS[663] = CONSTANTS[215]; CONSTANTS[664] = CONSTANTS[274]; CONSTANTS[665] = CONSTANTS[333]; CONSTANTS[666] = CONSTANTS[392]; CONSTANTS[667] = CONSTANTS[451]; CONSTANTS[668] = CONSTANTS[510]; CONSTANTS[669] = CONSTANTS[569]; CONSTANTS[670] = CONSTANTS[628]; CONSTANTS[671] = CONSTANTS[110]/CONSTANTS[108]; CONSTANTS[672] = CONSTANTS[109]/CONSTANTS[111]; CONSTANTS[673] = CONSTANTS[110]/CONSTANTS[111]; CONSTANTS[674] = CONSTANTS[108]/CONSTANTS[111]; CONSTANTS[675] = CONSTANTS[116]/CONSTANTS[54]; CONSTANTS[676] = CONSTANTS[168]/CONSTANTS[167]; CONSTANTS[677] = CONSTANTS[169]/CONSTANTS[167]; CONSTANTS[678] = CONSTANTS[168]/CONSTANTS[170]; CONSTANTS[679] = CONSTANTS[169]/CONSTANTS[170]; CONSTANTS[680] = CONSTANTS[167]/CONSTANTS[170]; CONSTANTS[681] = CONSTANTS[175]/CONSTANTS[54]; CONSTANTS[682] = CONSTANTS[227]/CONSTANTS[226]; CONSTANTS[683] = CONSTANTS[228]/CONSTANTS[226]; CONSTANTS[684] = CONSTANTS[227]/CONSTANTS[229]; CONSTANTS[685] = CONSTANTS[228]/CONSTANTS[229]; CONSTANTS[686] = CONSTANTS[226]/CONSTANTS[229]; CONSTANTS[687] = CONSTANTS[234]/CONSTANTS[54]; CONSTANTS[688] = CONSTANTS[286]/CONSTANTS[285]; CONSTANTS[689] = CONSTANTS[287]/CONSTANTS[285]; CONSTANTS[690] = CONSTANTS[286]/CONSTANTS[288]; CONSTANTS[691] = CONSTANTS[287]/CONSTANTS[288]; CONSTANTS[692] = CONSTANTS[285]/CONSTANTS[288]; CONSTANTS[693] = CONSTANTS[293]/CONSTANTS[54]; CONSTANTS[694] = CONSTANTS[345]/CONSTANTS[344]; CONSTANTS[695] = CONSTANTS[346]/CONSTANTS[344]; CONSTANTS[696] = CONSTANTS[345]/CONSTANTS[347]; CONSTANTS[697] = CONSTANTS[346]/CONSTANTS[347]; CONSTANTS[698] = CONSTANTS[344]/CONSTANTS[347]; CONSTANTS[699] = CONSTANTS[352]/CONSTANTS[54]; CONSTANTS[700] = CONSTANTS[404]/CONSTANTS[403]; CONSTANTS[701] = CONSTANTS[405]/CONSTANTS[403]; CONSTANTS[702] = CONSTANTS[404]/CONSTANTS[406]; CONSTANTS[703] = CONSTANTS[405]/CONSTANTS[406]; CONSTANTS[704] = CONSTANTS[403]/CONSTANTS[406]; CONSTANTS[705] = CONSTANTS[411]/CONSTANTS[54]; CONSTANTS[706] = CONSTANTS[463]/CONSTANTS[462]; CONSTANTS[707] = CONSTANTS[464]/CONSTANTS[462]; CONSTANTS[708] = CONSTANTS[463]/CONSTANTS[465]; CONSTANTS[709] = CONSTANTS[464]/CONSTANTS[465]; CONSTANTS[710] = CONSTANTS[462]/CONSTANTS[465]; CONSTANTS[711] = CONSTANTS[470]/CONSTANTS[54]; CONSTANTS[712] = CONSTANTS[522]/CONSTANTS[521]; CONSTANTS[713] = CONSTANTS[523]/CONSTANTS[521]; CONSTANTS[714] = CONSTANTS[522]/CONSTANTS[524]; CONSTANTS[715] = CONSTANTS[523]/CONSTANTS[524]; CONSTANTS[716] = CONSTANTS[521]/CONSTANTS[524]; CONSTANTS[717] = CONSTANTS[529]/CONSTANTS[54]; CONSTANTS[718] = CONSTANTS[581]/CONSTANTS[580]; CONSTANTS[719] = CONSTANTS[582]/CONSTANTS[580]; CONSTANTS[720] = CONSTANTS[581]/CONSTANTS[583]; CONSTANTS[721] = CONSTANTS[582]/CONSTANTS[583]; CONSTANTS[722] = CONSTANTS[580]/CONSTANTS[583]; CONSTANTS[723] = CONSTANTS[588]/CONSTANTS[54]; CONSTANTS[724] = CONSTANTS[640]/CONSTANTS[639]; CONSTANTS[725] = CONSTANTS[641]/CONSTANTS[639]; CONSTANTS[726] = CONSTANTS[640]/CONSTANTS[642]; CONSTANTS[727] = CONSTANTS[641]/CONSTANTS[642]; CONSTANTS[728] = CONSTANTS[639]/CONSTANTS[642]; CONSTANTS[729] = CONSTANTS[647]/CONSTANTS[54]; RATES[0] = 0.1001; RATES[2] = 0.1001; RATES[3] = 0.1001; RATES[5] = 0.1001; RATES[6] = 0.1001; RATES[7] = 0.1001; RATES[1] = 0.1001; RATES[4] = 0.1001; RATES[31] = 0.1001; RATES[32] = 0.1001; RATES[18] = 0.1001; RATES[8] = 0.1001; RATES[29] = 0.1001; RATES[30] = 0.1001; RATES[28] = 0.1001; RATES[36] = 0.1001; RATES[37] = 0.1001; RATES[19] = 0.1001; RATES[9] = 0.1001; RATES[34] = 0.1001; RATES[35] = 0.1001; RATES[33] = 0.1001; RATES[41] = 0.1001; RATES[42] = 0.1001; RATES[20] = 0.1001; RATES[10] = 0.1001; RATES[39] = 0.1001; RATES[40] = 0.1001; RATES[38] = 0.1001; RATES[46] = 0.1001; RATES[47] = 0.1001; RATES[21] = 0.1001; RATES[11] = 0.1001; RATES[44] = 0.1001; RATES[45] = 0.1001; RATES[43] = 0.1001; RATES[51] = 0.1001; RATES[52] = 0.1001; RATES[22] = 0.1001; RATES[12] = 0.1001; RATES[49] = 0.1001; RATES[50] = 0.1001; RATES[48] = 0.1001; RATES[56] = 0.1001; RATES[57] = 0.1001; RATES[23] = 0.1001; RATES[13] = 0.1001; RATES[54] = 0.1001; RATES[55] = 0.1001; RATES[53] = 0.1001; RATES[61] = 0.1001; RATES[62] = 0.1001; RATES[24] = 0.1001; RATES[14] = 0.1001; RATES[59] = 0.1001; RATES[60] = 0.1001; RATES[58] = 0.1001; RATES[66] = 0.1001; RATES[67] = 0.1001; RATES[25] = 0.1001; RATES[15] = 0.1001; RATES[64] = 0.1001; RATES[65] = 0.1001; RATES[63] = 0.1001; RATES[71] = 0.1001; RATES[72] = 0.1001; RATES[26] = 0.1001; RATES[16] = 0.1001; RATES[69] = 0.1001; RATES[70] = 0.1001; RATES[68] = 0.1001; RATES[76] = 0.1001; RATES[77] = 0.1001; RATES[27] = 0.1001; RATES[17] = 0.1001; RATES[74] = 0.1001; RATES[75] = 0.1001; RATES[73] = 0.1001; } void computeResiduals(double VOI, double* CONSTANTS, double* RATES, double* OLDRATES, double* STATES, double* OLDSTATES, double* ALGEBRAIC, double* CONDVARS) { resid[0] = RATES[0] - CONSTANTS[2]*STATES[2]*STATES[3] - CONSTANTS[3]*STATES[0]; resid[1] = RATES[2] - (ALGEBRAIC[1] - STATES[2])/CONSTANTS[648]; resid[2] = RATES[3] - (ALGEBRAIC[2] - STATES[3])/ALGEBRAIC[3]; resid[3] = RATES[5] - ALGEBRAIC[6]*(1.00000 - STATES[5]) - ALGEBRAIC[7]*STATES[5]; resid[4] = RATES[6] - ALGEBRAIC[8]*(1.00000 - STATES[6]) - ALGEBRAIC[9]*STATES[6]; resid[5] = RATES[7] - ALGEBRAIC[11]*(1.00000 - STATES[7]) - ALGEBRAIC[12]*STATES[7]; resid[6] = RATES[1] - - (1.00000/CONSTANTS[33])*(ALGEBRAIC[15]+ALGEBRAIC[260]+ALGEBRAIC[263]+ALGEBRAIC[266]+ALGEBRAIC[269]+ALGEBRAIC[272]+ALGEBRAIC[275]+ALGEBRAIC[278]+ALGEBRAIC[281]+ALGEBRAIC[284]+ALGEBRAIC[287]); resid[7] = RATES[4] - ALGEBRAIC[37] - ( CONSTANTS[40]*ALGEBRAIC[17]+ CONSTANTS[40]*ALGEBRAIC[18]+ CONSTANTS[40]*ALGEBRAIC[19]+ CONSTANTS[40]*ALGEBRAIC[20]+ CONSTANTS[40]*ALGEBRAIC[21]+ CONSTANTS[40]*ALGEBRAIC[22]+ CONSTANTS[40]*ALGEBRAIC[23]+ CONSTANTS[40]*ALGEBRAIC[24]+ CONSTANTS[40]*ALGEBRAIC[25]+ CONSTANTS[40]*ALGEBRAIC[26]+ (CONSTANTS[41]/2.00000)*(ALGEBRAIC[0]+ALGEBRAIC[4])); resid[8] = RATES[31] - ALGEBRAIC[52]*(1.00000 - STATES[31]) - (( CONSTANTS[104]*ALGEBRAIC[49]*ALGEBRAIC[51])/( CONSTANTS[104]*ALGEBRAIC[49]+ALGEBRAIC[50]))*STATES[31]; resid[9] = RATES[32] - CONSTANTS[661]*(1.00000 - STATES[32]) - ALGEBRAIC[53]*STATES[32]; resid[10] = RATES[18] - (ALGEBRAIC[27]+ CONSTANTS[650]*ALGEBRAIC[54]) - ( (CONSTANTS[107]/( CONSTANTS[675]*2.00000))*ALGEBRAIC[258]+ CONSTANTS[671]*ALGEBRAIC[47]); resid[11] = RATES[8] - (ALGEBRAIC[17]+ CONSTANTS[673]*ALGEBRAIC[221]) - ( CONSTANTS[674]*ALGEBRAIC[27]+ CONSTANTS[672]*ALGEBRAIC[220]); resid[12] = RATES[29] - ALGEBRAIC[47] - ALGEBRAIC[221]; resid[13] = RATES[30] - ALGEBRAIC[55]*(ALGEBRAIC[220] - ALGEBRAIC[54]); resid[14] = RATES[28] - - (CONSTANTS[107]/( 1.00000*CONSTANTS[675]))*ALGEBRAIC[259]; resid[15] = RATES[36] - ALGEBRAIC[70]*(1.00000 - STATES[36]) - (( CONSTANTS[163]*ALGEBRAIC[67]*ALGEBRAIC[69])/( CONSTANTS[163]*ALGEBRAIC[67]+ALGEBRAIC[68]))*STATES[36]; resid[16] = RATES[37] - CONSTANTS[662]*(1.00000 - STATES[37]) - ALGEBRAIC[71]*STATES[37]; resid[17] = RATES[19] - (ALGEBRAIC[28]+ CONSTANTS[676]*ALGEBRAIC[72]) - ( (CONSTANTS[166]/( CONSTANTS[681]*2.00000))*ALGEBRAIC[261]+ CONSTANTS[677]*ALGEBRAIC[65]); resid[18] = RATES[9] - (ALGEBRAIC[18]+ CONSTANTS[679]*ALGEBRAIC[225]) - ( CONSTANTS[680]*ALGEBRAIC[28]+ CONSTANTS[678]*ALGEBRAIC[224]); resid[19] = RATES[34] - ALGEBRAIC[65] - ALGEBRAIC[225]; resid[20] = RATES[35] - ALGEBRAIC[73]*(ALGEBRAIC[224] - ALGEBRAIC[72]); resid[21] = RATES[33] - - (CONSTANTS[166]/( 1.00000*CONSTANTS[681]))*ALGEBRAIC[262]; resid[22] = RATES[41] - ALGEBRAIC[88]*(1.00000 - STATES[41]) - (( CONSTANTS[222]*ALGEBRAIC[85]*ALGEBRAIC[87])/( CONSTANTS[222]*ALGEBRAIC[85]+ALGEBRAIC[86]))*STATES[41]; resid[23] = RATES[42] - CONSTANTS[663]*(1.00000 - STATES[42]) - ALGEBRAIC[89]*STATES[42]; resid[24] = RATES[20] - (ALGEBRAIC[29]+ CONSTANTS[682]*ALGEBRAIC[90]) - ( (CONSTANTS[225]/( CONSTANTS[687]*2.00000))*ALGEBRAIC[264]+ CONSTANTS[683]*ALGEBRAIC[83]); resid[25] = RATES[10] - (ALGEBRAIC[19]+ CONSTANTS[685]*ALGEBRAIC[229]) - ( CONSTANTS[686]*ALGEBRAIC[29]+ CONSTANTS[684]*ALGEBRAIC[228]); resid[26] = RATES[39] - ALGEBRAIC[83] - ALGEBRAIC[229]; resid[27] = RATES[40] - ALGEBRAIC[91]*(ALGEBRAIC[228] - ALGEBRAIC[90]); resid[28] = RATES[38] - - (CONSTANTS[225]/( 1.00000*CONSTANTS[687]))*ALGEBRAIC[265]; resid[29] = RATES[46] - ALGEBRAIC[106]*(1.00000 - STATES[46]) - (( CONSTANTS[281]*ALGEBRAIC[103]*ALGEBRAIC[105])/( CONSTANTS[281]*ALGEBRAIC[103]+ALGEBRAIC[104]))*STATES[46]; resid[30] = RATES[47] - CONSTANTS[664]*(1.00000 - STATES[47]) - ALGEBRAIC[107]*STATES[47]; resid[31] = RATES[21] - (ALGEBRAIC[30]+ CONSTANTS[688]*ALGEBRAIC[108]) - ( (CONSTANTS[284]/( CONSTANTS[693]*2.00000))*ALGEBRAIC[267]+ CONSTANTS[689]*ALGEBRAIC[101]); resid[32] = RATES[11] - (ALGEBRAIC[20]+ CONSTANTS[691]*ALGEBRAIC[233]) - ( CONSTANTS[692]*ALGEBRAIC[30]+ CONSTANTS[690]*ALGEBRAIC[232]); resid[33] = RATES[44] - ALGEBRAIC[101] - ALGEBRAIC[233]; resid[34] = RATES[45] - ALGEBRAIC[109]*(ALGEBRAIC[232] - ALGEBRAIC[108]); resid[35] = RATES[43] - - (CONSTANTS[284]/( 1.00000*CONSTANTS[693]))*ALGEBRAIC[268]; resid[36] = RATES[51] - ALGEBRAIC[124]*(1.00000 - STATES[51]) - (( CONSTANTS[340]*ALGEBRAIC[121]*ALGEBRAIC[123])/( CONSTANTS[340]*ALGEBRAIC[121]+ALGEBRAIC[122]))*STATES[51]; resid[37] = RATES[52] - CONSTANTS[665]*(1.00000 - STATES[52]) - ALGEBRAIC[125]*STATES[52]; resid[38] = RATES[22] - (ALGEBRAIC[31]+ CONSTANTS[694]*ALGEBRAIC[126]) - ( (CONSTANTS[343]/( CONSTANTS[699]*2.00000))*ALGEBRAIC[270]+ CONSTANTS[695]*ALGEBRAIC[119]); resid[39] = RATES[12] - (ALGEBRAIC[21]+ CONSTANTS[697]*ALGEBRAIC[237]) - ( CONSTANTS[698]*ALGEBRAIC[31]+ CONSTANTS[696]*ALGEBRAIC[236]); resid[40] = RATES[49] - ALGEBRAIC[119] - ALGEBRAIC[237]; resid[41] = RATES[50] - ALGEBRAIC[127]*(ALGEBRAIC[236] - ALGEBRAIC[126]); resid[42] = RATES[48] - - (CONSTANTS[343]/( 1.00000*CONSTANTS[699]))*ALGEBRAIC[271]; resid[43] = RATES[56] - ALGEBRAIC[142]*(1.00000 - STATES[56]) - (( CONSTANTS[399]*ALGEBRAIC[139]*ALGEBRAIC[141])/( CONSTANTS[399]*ALGEBRAIC[139]+ALGEBRAIC[140]))*STATES[56]; resid[44] = RATES[57] - CONSTANTS[666]*(1.00000 - STATES[57]) - ALGEBRAIC[143]*STATES[57]; resid[45] = RATES[23] - (ALGEBRAIC[32]+ CONSTANTS[700]*ALGEBRAIC[144]) - ( (CONSTANTS[402]/( CONSTANTS[705]*2.00000))*ALGEBRAIC[273]+ CONSTANTS[701]*ALGEBRAIC[137]); resid[46] = RATES[13] - (ALGEBRAIC[22]+ CONSTANTS[703]*ALGEBRAIC[241]) - ( CONSTANTS[704]*ALGEBRAIC[32]+ CONSTANTS[702]*ALGEBRAIC[240]); resid[47] = RATES[54] - ALGEBRAIC[137] - ALGEBRAIC[241]; resid[48] = RATES[55] - ALGEBRAIC[145]*(ALGEBRAIC[240] - ALGEBRAIC[144]); resid[49] = RATES[53] - - (CONSTANTS[402]/( 1.00000*CONSTANTS[705]))*ALGEBRAIC[274]; resid[50] = RATES[61] - ALGEBRAIC[160]*(1.00000 - STATES[61]) - (( CONSTANTS[458]*ALGEBRAIC[157]*ALGEBRAIC[159])/( CONSTANTS[458]*ALGEBRAIC[157]+ALGEBRAIC[158]))*STATES[61]; resid[51] = RATES[62] - CONSTANTS[667]*(1.00000 - STATES[62]) - ALGEBRAIC[161]*STATES[62]; resid[52] = RATES[24] - (ALGEBRAIC[33]+ CONSTANTS[706]*ALGEBRAIC[162]) - ( (CONSTANTS[461]/( CONSTANTS[711]*2.00000))*ALGEBRAIC[276]+ CONSTANTS[707]*ALGEBRAIC[155]); resid[53] = RATES[14] - (ALGEBRAIC[23]+ CONSTANTS[709]*ALGEBRAIC[245]) - ( CONSTANTS[710]*ALGEBRAIC[33]+ CONSTANTS[708]*ALGEBRAIC[244]); resid[54] = RATES[59] - ALGEBRAIC[155] - ALGEBRAIC[245]; resid[55] = RATES[60] - ALGEBRAIC[163]*(ALGEBRAIC[244] - ALGEBRAIC[162]); resid[56] = RATES[58] - - (CONSTANTS[461]/( 1.00000*CONSTANTS[711]))*ALGEBRAIC[277]; resid[57] = RATES[66] - ALGEBRAIC[178]*(1.00000 - STATES[66]) - (( CONSTANTS[517]*ALGEBRAIC[175]*ALGEBRAIC[177])/( CONSTANTS[517]*ALGEBRAIC[175]+ALGEBRAIC[176]))*STATES[66]; resid[58] = RATES[67] - CONSTANTS[668]*(1.00000 - STATES[67]) - ALGEBRAIC[179]*STATES[67]; resid[59] = RATES[25] - (ALGEBRAIC[34]+ CONSTANTS[712]*ALGEBRAIC[180]) - ( (CONSTANTS[520]/( CONSTANTS[717]*2.00000))*ALGEBRAIC[279]+ CONSTANTS[713]*ALGEBRAIC[173]); resid[60] = RATES[15] - (ALGEBRAIC[24]+ CONSTANTS[715]*ALGEBRAIC[249]) - ( CONSTANTS[716]*ALGEBRAIC[34]+ CONSTANTS[714]*ALGEBRAIC[248]); resid[61] = RATES[64] - ALGEBRAIC[173] - ALGEBRAIC[249]; resid[62] = RATES[65] - ALGEBRAIC[181]*(ALGEBRAIC[248] - ALGEBRAIC[180]); resid[63] = RATES[63] - - (CONSTANTS[520]/( 1.00000*CONSTANTS[717]))*ALGEBRAIC[280]; resid[64] = RATES[71] - ALGEBRAIC[196]*(1.00000 - STATES[71]) - (( CONSTANTS[576]*ALGEBRAIC[193]*ALGEBRAIC[195])/( CONSTANTS[576]*ALGEBRAIC[193]+ALGEBRAIC[194]))*STATES[71]; resid[65] = RATES[72] - CONSTANTS[669]*(1.00000 - STATES[72]) - ALGEBRAIC[197]*STATES[72]; resid[66] = RATES[26] - (ALGEBRAIC[35]+ CONSTANTS[718]*ALGEBRAIC[198]) - ( (CONSTANTS[579]/( CONSTANTS[723]*2.00000))*ALGEBRAIC[282]+ CONSTANTS[719]*ALGEBRAIC[191]); resid[67] = RATES[16] - (ALGEBRAIC[25]+ CONSTANTS[721]*ALGEBRAIC[253]) - ( CONSTANTS[722]*ALGEBRAIC[35]+ CONSTANTS[720]*ALGEBRAIC[252]); resid[68] = RATES[69] - ALGEBRAIC[191] - ALGEBRAIC[253]; resid[69] = RATES[70] - ALGEBRAIC[199]*(ALGEBRAIC[252] - ALGEBRAIC[198]); resid[70] = RATES[68] - - (CONSTANTS[579]/( 1.00000*CONSTANTS[723]))*ALGEBRAIC[283]; resid[71] = RATES[76] - ALGEBRAIC[214]*(1.00000 - STATES[76]) - (( CONSTANTS[635]*ALGEBRAIC[211]*ALGEBRAIC[213])/( CONSTANTS[635]*ALGEBRAIC[211]+ALGEBRAIC[212]))*STATES[76]; resid[72] = RATES[77] - CONSTANTS[670]*(1.00000 - STATES[77]) - ALGEBRAIC[215]*STATES[77]; resid[73] = RATES[27] - (ALGEBRAIC[36]+ CONSTANTS[724]*ALGEBRAIC[216]) - ( (CONSTANTS[638]/( CONSTANTS[729]*2.00000))*ALGEBRAIC[285]+ CONSTANTS[725]*ALGEBRAIC[209]); resid[74] = RATES[17] - (ALGEBRAIC[26]+ CONSTANTS[727]*ALGEBRAIC[257]) - ( CONSTANTS[728]*ALGEBRAIC[36]+ CONSTANTS[726]*ALGEBRAIC[256]); resid[75] = RATES[74] - ALGEBRAIC[209] - ALGEBRAIC[257]; resid[76] = RATES[75] - ALGEBRAIC[217]*(ALGEBRAIC[256] - ALGEBRAIC[216]); resid[77] = RATES[73] - - (CONSTANTS[638]/( 1.00000*CONSTANTS[729]))*ALGEBRAIC[286]; } void computeVariables(double VOI, double* CONSTANTS, double* RATES, double* STATES, double* ALGEBRAIC) { ALGEBRAIC[16] = (( CONSTANTS[35]*CONSTANTS[34])/( 2.00000*CONSTANTS[36]))*log(CONSTANTS[37]/STATES[4]); } void computeEssentialVariables(double VOI, double* CONSTANTS, double* RATES, double* STATES, double* ALGEBRAIC) { ALGEBRAIC[0] = CONSTANTS[0]*STATES[0]*(STATES[1] - CONSTANTS[1]); ALGEBRAIC[1] = 1.00000/(1.00000+exp( CONSTANTS[5]*(STATES[1] - CONSTANTS[6]))); ALGEBRAIC[2] = 1.00000/(1.00000+exp( CONSTANTS[11]*(STATES[1] - CONSTANTS[12]))); ALGEBRAIC[3] = CONSTANTS[7]+(CONSTANTS[8] - CONSTANTS[7])/(1.00000+exp( CONSTANTS[9]*(STATES[1] - CONSTANTS[10]))); ALGEBRAIC[4] = CONSTANTS[13]*(STATES[4]/(CONSTANTS[14]+STATES[4])); ALGEBRAIC[6] = CONSTANTS[16]*(CONSTANTS[17]/(1.00000+exp( CONSTANTS[18]*(STATES[1] - CONSTANTS[19])))+(1.00000 - CONSTANTS[17])); ALGEBRAIC[7] = CONSTANTS[16]*(CONSTANTS[17] - CONSTANTS[17]/(1.00000+exp( CONSTANTS[18]*(STATES[1] - CONSTANTS[19])))); ALGEBRAIC[8] = CONSTANTS[20]*(CONSTANTS[21]/(1.00000+exp( CONSTANTS[22]*(STATES[1] - CONSTANTS[23])))+(1.00000 - CONSTANTS[21])); ALGEBRAIC[9] = CONSTANTS[20]*(CONSTANTS[21] - CONSTANTS[21]/(1.00000+exp( CONSTANTS[22]*(STATES[1] - CONSTANTS[23])))); ALGEBRAIC[11] = CONSTANTS[25]*(CONSTANTS[26]/(1.00000+exp( CONSTANTS[27]*(STATES[1] - CONSTANTS[28])))+(1.00000 - CONSTANTS[26])); ALGEBRAIC[12] = CONSTANTS[25]*(CONSTANTS[26] - CONSTANTS[26]/(1.00000+exp( CONSTANTS[27]*(STATES[1] - CONSTANTS[28])))); ALGEBRAIC[5] = CONSTANTS[15]*STATES[5]*STATES[6]*(STATES[1] - CONSTANTS[649]); ALGEBRAIC[10] = CONSTANTS[24]*STATES[7]*(STATES[1] - CONSTANTS[649]); ALGEBRAIC[13] = CONSTANTS[29]*(STATES[1] - CONSTANTS[30]); ALGEBRAIC[14] = CONSTANTS[31]*(STATES[1] - CONSTANTS[32]); ALGEBRAIC[15] = ALGEBRAIC[0]+ALGEBRAIC[4]+ALGEBRAIC[5]+ALGEBRAIC[10]+ALGEBRAIC[13]+ALGEBRAIC[14]; ALGEBRAIC[17] = CONSTANTS[42]*(STATES[4] - STATES[8]); ALGEBRAIC[18] = CONSTANTS[43]*(STATES[4] - STATES[9]); ALGEBRAIC[19] = CONSTANTS[44]*(STATES[4] - STATES[10]); ALGEBRAIC[20] = CONSTANTS[45]*(STATES[4] - STATES[11]); ALGEBRAIC[21] = CONSTANTS[46]*(STATES[4] - STATES[12]); ALGEBRAIC[22] = CONSTANTS[47]*(STATES[4] - STATES[13]); ALGEBRAIC[23] = CONSTANTS[48]*(STATES[4] - STATES[14]); ALGEBRAIC[24] = CONSTANTS[49]*(STATES[4] - STATES[15]); ALGEBRAIC[25] = CONSTANTS[50]*(STATES[4] - STATES[16]); ALGEBRAIC[26] = CONSTANTS[51]*(STATES[4] - STATES[17]); ALGEBRAIC[27] = CONSTANTS[651]*(STATES[8] - STATES[18]); ALGEBRAIC[28] = CONSTANTS[652]*(STATES[9] - STATES[19]); ALGEBRAIC[29] = CONSTANTS[653]*(STATES[10] - STATES[20]); ALGEBRAIC[30] = CONSTANTS[654]*(STATES[11] - STATES[21]); ALGEBRAIC[31] = CONSTANTS[655]*(STATES[12] - STATES[22]); ALGEBRAIC[32] = CONSTANTS[656]*(STATES[13] - STATES[23]); ALGEBRAIC[33] = CONSTANTS[657]*(STATES[14] - STATES[24]); ALGEBRAIC[34] = CONSTANTS[658]*(STATES[15] - STATES[25]); ALGEBRAIC[35] = CONSTANTS[659]*(STATES[16] - STATES[26]); ALGEBRAIC[36] = CONSTANTS[660]*(STATES[17] - STATES[27]); ALGEBRAIC[37] = CONSTANTS[55]*(CONSTANTS[56] - STATES[4]); ALGEBRAIC[47] = ( CONSTANTS[77]*(STATES[18] - CONSTANTS[78]*STATES[29]))/(1.00000+ CONSTANTS[79]*STATES[18]+ CONSTANTS[80]*STATES[29]+ CONSTANTS[81]*STATES[18]*STATES[29]); ALGEBRAIC[49] = ( CONSTANTS[88]*CONSTANTS[93]+ CONSTANTS[90]*STATES[8])/(CONSTANTS[93]+STATES[8]); ALGEBRAIC[50] = ( (CONSTANTS[87]+CONSTANTS[91])*CONSTANTS[94])/(CONSTANTS[94]+STATES[8]); ALGEBRAIC[51] = ( CONSTANTS[89]*CONSTANTS[94]+ CONSTANTS[92]*STATES[8])/(CONSTANTS[94]+STATES[8]); ALGEBRAIC[52] = ( CONSTANTS[103]*STATES[32])/( (1.00000+pow(CONSTANTS[99]/STATES[8], CONSTANTS[101]))*(1.00000+pow(STATES[8]/CONSTANTS[100], CONSTANTS[102]))); ALGEBRAIC[53] = CONSTANTS[95]/(1.00000+pow(CONSTANTS[98]/STATES[8], CONSTANTS[96])); ALGEBRAIC[54] = CONSTANTS[105]*(STATES[30]/(STATES[30]+CONSTANTS[106])); ALGEBRAIC[55] = 1.00000/(1.00000+( CONSTANTS[112]*CONSTANTS[113])/pow(CONSTANTS[112]+STATES[30], 2.00000)); ALGEBRAIC[65] = ( CONSTANTS[136]*(STATES[19] - CONSTANTS[137]*STATES[34]))/(1.00000+ CONSTANTS[138]*STATES[19]+ CONSTANTS[139]*STATES[34]+ CONSTANTS[140]*STATES[19]*STATES[34]); ALGEBRAIC[67] = ( CONSTANTS[147]*CONSTANTS[152]+ CONSTANTS[149]*STATES[9])/(CONSTANTS[152]+STATES[9]); ALGEBRAIC[68] = ( (CONSTANTS[146]+CONSTANTS[150])*CONSTANTS[153])/(CONSTANTS[153]+STATES[9]); ALGEBRAIC[69] = ( CONSTANTS[148]*CONSTANTS[153]+ CONSTANTS[151]*STATES[9])/(CONSTANTS[153]+STATES[9]); ALGEBRAIC[70] = ( CONSTANTS[162]*STATES[37])/( (1.00000+pow(CONSTANTS[158]/STATES[9], CONSTANTS[160]))*(1.00000+pow(STATES[9]/CONSTANTS[159], CONSTANTS[161]))); ALGEBRAIC[71] = CONSTANTS[154]/(1.00000+pow(CONSTANTS[157]/STATES[9], CONSTANTS[155])); ALGEBRAIC[72] = CONSTANTS[164]*(STATES[35]/(STATES[35]+CONSTANTS[165])); ALGEBRAIC[73] = 1.00000/(1.00000+( CONSTANTS[171]*CONSTANTS[172])/pow(CONSTANTS[171]+STATES[35], 2.00000)); ALGEBRAIC[83] = ( CONSTANTS[195]*(STATES[20] - CONSTANTS[196]*STATES[39]))/(1.00000+ CONSTANTS[197]*STATES[20]+ CONSTANTS[198]*STATES[39]+ CONSTANTS[199]*STATES[20]*STATES[39]); ALGEBRAIC[85] = ( CONSTANTS[206]*CONSTANTS[211]+ CONSTANTS[208]*STATES[10])/(CONSTANTS[211]+STATES[10]); ALGEBRAIC[86] = ( (CONSTANTS[205]+CONSTANTS[209])*CONSTANTS[212])/(CONSTANTS[212]+STATES[10]); ALGEBRAIC[87] = ( CONSTANTS[207]*CONSTANTS[212]+ CONSTANTS[210]*STATES[10])/(CONSTANTS[212]+STATES[10]); ALGEBRAIC[88] = ( CONSTANTS[221]*STATES[42])/( (1.00000+pow(CONSTANTS[217]/STATES[10], CONSTANTS[219]))*(1.00000+pow(STATES[10]/CONSTANTS[218], CONSTANTS[220]))); ALGEBRAIC[89] = CONSTANTS[213]/(1.00000+pow(CONSTANTS[216]/STATES[10], CONSTANTS[214])); ALGEBRAIC[90] = CONSTANTS[223]*(STATES[40]/(STATES[40]+CONSTANTS[224])); ALGEBRAIC[91] = 1.00000/(1.00000+( CONSTANTS[230]*CONSTANTS[231])/pow(CONSTANTS[230]+STATES[40], 2.00000)); ALGEBRAIC[101] = ( CONSTANTS[254]*(STATES[21] - CONSTANTS[255]*STATES[44]))/(1.00000+ CONSTANTS[256]*STATES[21]+ CONSTANTS[257]*STATES[44]+ CONSTANTS[258]*STATES[21]*STATES[44]); ALGEBRAIC[103] = ( CONSTANTS[265]*CONSTANTS[270]+ CONSTANTS[267]*STATES[11])/(CONSTANTS[270]+STATES[11]); ALGEBRAIC[104] = ( (CONSTANTS[264]+CONSTANTS[268])*CONSTANTS[271])/(CONSTANTS[271]+STATES[11]); ALGEBRAIC[105] = ( CONSTANTS[266]*CONSTANTS[271]+ CONSTANTS[269]*STATES[11])/(CONSTANTS[271]+STATES[11]); ALGEBRAIC[106] = ( CONSTANTS[280]*STATES[47])/( (1.00000+pow(CONSTANTS[276]/STATES[11], CONSTANTS[278]))*(1.00000+pow(STATES[11]/CONSTANTS[277], CONSTANTS[279]))); ALGEBRAIC[107] = CONSTANTS[272]/(1.00000+pow(CONSTANTS[275]/STATES[11], CONSTANTS[273])); ALGEBRAIC[108] = CONSTANTS[282]*(STATES[45]/(STATES[45]+CONSTANTS[283])); ALGEBRAIC[109] = 1.00000/(1.00000+( CONSTANTS[289]*CONSTANTS[290])/pow(CONSTANTS[289]+STATES[45], 2.00000)); ALGEBRAIC[119] = ( CONSTANTS[313]*(STATES[22] - CONSTANTS[314]*STATES[49]))/(1.00000+ CONSTANTS[315]*STATES[22]+ CONSTANTS[316]*STATES[49]+ CONSTANTS[317]*STATES[22]*STATES[49]); ALGEBRAIC[121] = ( CONSTANTS[324]*CONSTANTS[329]+ CONSTANTS[326]*STATES[12])/(CONSTANTS[329]+STATES[12]); ALGEBRAIC[122] = ( (CONSTANTS[323]+CONSTANTS[327])*CONSTANTS[330])/(CONSTANTS[330]+STATES[12]); ALGEBRAIC[123] = ( CONSTANTS[325]*CONSTANTS[330]+ CONSTANTS[328]*STATES[12])/(CONSTANTS[330]+STATES[12]); ALGEBRAIC[124] = ( CONSTANTS[339]*STATES[52])/( (1.00000+pow(CONSTANTS[335]/STATES[12], CONSTANTS[337]))*(1.00000+pow(STATES[12]/CONSTANTS[336], CONSTANTS[338]))); ALGEBRAIC[125] = CONSTANTS[331]/(1.00000+pow(CONSTANTS[334]/STATES[12], CONSTANTS[332])); ALGEBRAIC[126] = CONSTANTS[341]*(STATES[50]/(STATES[50]+CONSTANTS[342])); ALGEBRAIC[127] = 1.00000/(1.00000+( CONSTANTS[348]*CONSTANTS[349])/pow(CONSTANTS[348]+STATES[50], 2.00000)); ALGEBRAIC[137] = ( CONSTANTS[372]*(STATES[23] - CONSTANTS[373]*STATES[54]))/(1.00000+ CONSTANTS[374]*STATES[23]+ CONSTANTS[375]*STATES[54]+ CONSTANTS[376]*STATES[23]*STATES[54]); ALGEBRAIC[139] = ( CONSTANTS[383]*CONSTANTS[388]+ CONSTANTS[385]*STATES[13])/(CONSTANTS[388]+STATES[13]); ALGEBRAIC[140] = ( (CONSTANTS[382]+CONSTANTS[386])*CONSTANTS[389])/(CONSTANTS[389]+STATES[13]); ALGEBRAIC[141] = ( CONSTANTS[384]*CONSTANTS[389]+ CONSTANTS[387]*STATES[13])/(CONSTANTS[389]+STATES[13]); ALGEBRAIC[142] = ( CONSTANTS[398]*STATES[57])/( (1.00000+pow(CONSTANTS[394]/STATES[13], CONSTANTS[396]))*(1.00000+pow(STATES[13]/CONSTANTS[395], CONSTANTS[397]))); ALGEBRAIC[143] = CONSTANTS[390]/(1.00000+pow(CONSTANTS[393]/STATES[13], CONSTANTS[391])); ALGEBRAIC[144] = CONSTANTS[400]*(STATES[55]/(STATES[55]+CONSTANTS[401])); ALGEBRAIC[145] = 1.00000/(1.00000+( CONSTANTS[407]*CONSTANTS[408])/pow(CONSTANTS[407]+STATES[55], 2.00000)); ALGEBRAIC[155] = ( CONSTANTS[431]*(STATES[24] - CONSTANTS[432]*STATES[59]))/(1.00000+ CONSTANTS[433]*STATES[24]+ CONSTANTS[434]*STATES[59]+ CONSTANTS[435]*STATES[24]*STATES[59]); ALGEBRAIC[157] = ( CONSTANTS[442]*CONSTANTS[447]+ CONSTANTS[444]*STATES[14])/(CONSTANTS[447]+STATES[14]); ALGEBRAIC[158] = ( (CONSTANTS[441]+CONSTANTS[445])*CONSTANTS[448])/(CONSTANTS[448]+STATES[14]); ALGEBRAIC[159] = ( CONSTANTS[443]*CONSTANTS[448]+ CONSTANTS[446]*STATES[14])/(CONSTANTS[448]+STATES[14]); ALGEBRAIC[160] = ( CONSTANTS[457]*STATES[62])/( (1.00000+pow(CONSTANTS[453]/STATES[14], CONSTANTS[455]))*(1.00000+pow(STATES[14]/CONSTANTS[454], CONSTANTS[456]))); ALGEBRAIC[161] = CONSTANTS[449]/(1.00000+pow(CONSTANTS[452]/STATES[14], CONSTANTS[450])); ALGEBRAIC[162] = CONSTANTS[459]*(STATES[60]/(STATES[60]+CONSTANTS[460])); ALGEBRAIC[163] = 1.00000/(1.00000+( CONSTANTS[466]*CONSTANTS[467])/pow(CONSTANTS[466]+STATES[60], 2.00000)); ALGEBRAIC[173] = ( CONSTANTS[490]*(STATES[25] - CONSTANTS[491]*STATES[64]))/(1.00000+ CONSTANTS[492]*STATES[25]+ CONSTANTS[493]*STATES[64]+ CONSTANTS[494]*STATES[25]*STATES[64]); ALGEBRAIC[175] = ( CONSTANTS[501]*CONSTANTS[506]+ CONSTANTS[503]*STATES[15])/(CONSTANTS[506]+STATES[15]); ALGEBRAIC[176] = ( (CONSTANTS[500]+CONSTANTS[504])*CONSTANTS[507])/(CONSTANTS[507]+STATES[15]); ALGEBRAIC[177] = ( CONSTANTS[502]*CONSTANTS[507]+ CONSTANTS[505]*STATES[15])/(CONSTANTS[507]+STATES[15]); ALGEBRAIC[178] = ( CONSTANTS[516]*STATES[67])/( (1.00000+pow(CONSTANTS[512]/STATES[15], CONSTANTS[514]))*(1.00000+pow(STATES[15]/CONSTANTS[513], CONSTANTS[515]))); ALGEBRAIC[179] = CONSTANTS[508]/(1.00000+pow(CONSTANTS[511]/STATES[15], CONSTANTS[509])); ALGEBRAIC[180] = CONSTANTS[518]*(STATES[65]/(STATES[65]+CONSTANTS[519])); ALGEBRAIC[181] = 1.00000/(1.00000+( CONSTANTS[525]*CONSTANTS[526])/pow(CONSTANTS[525]+STATES[65], 2.00000)); ALGEBRAIC[191] = ( CONSTANTS[549]*(STATES[26] - CONSTANTS[550]*STATES[69]))/(1.00000+ CONSTANTS[551]*STATES[26]+ CONSTANTS[552]*STATES[69]+ CONSTANTS[553]*STATES[26]*STATES[69]); ALGEBRAIC[193] = ( CONSTANTS[560]*CONSTANTS[565]+ CONSTANTS[562]*STATES[16])/(CONSTANTS[565]+STATES[16]); ALGEBRAIC[194] = ( (CONSTANTS[559]+CONSTANTS[563])*CONSTANTS[566])/(CONSTANTS[566]+STATES[16]); ALGEBRAIC[195] = ( CONSTANTS[561]*CONSTANTS[566]+ CONSTANTS[564]*STATES[16])/(CONSTANTS[566]+STATES[16]); ALGEBRAIC[196] = ( CONSTANTS[575]*STATES[72])/( (1.00000+pow(CONSTANTS[571]/STATES[16], CONSTANTS[573]))*(1.00000+pow(STATES[16]/CONSTANTS[572], CONSTANTS[574]))); ALGEBRAIC[197] = CONSTANTS[567]/(1.00000+pow(CONSTANTS[570]/STATES[16], CONSTANTS[568])); ALGEBRAIC[198] = CONSTANTS[577]*(STATES[70]/(STATES[70]+CONSTANTS[578])); ALGEBRAIC[199] = 1.00000/(1.00000+( CONSTANTS[584]*CONSTANTS[585])/pow(CONSTANTS[584]+STATES[70], 2.00000)); ALGEBRAIC[209] = ( CONSTANTS[608]*(STATES[27] - CONSTANTS[609]*STATES[74]))/(1.00000+ CONSTANTS[610]*STATES[27]+ CONSTANTS[611]*STATES[74]+ CONSTANTS[612]*STATES[27]*STATES[74]); ALGEBRAIC[211] = ( CONSTANTS[619]*CONSTANTS[624]+ CONSTANTS[621]*STATES[17])/(CONSTANTS[624]+STATES[17]); ALGEBRAIC[212] = ( (CONSTANTS[618]+CONSTANTS[622])*CONSTANTS[625])/(CONSTANTS[625]+STATES[17]); ALGEBRAIC[213] = ( CONSTANTS[620]*CONSTANTS[625]+ CONSTANTS[623]*STATES[17])/(CONSTANTS[625]+STATES[17]); ALGEBRAIC[214] = ( CONSTANTS[634]*STATES[77])/( (1.00000+pow(CONSTANTS[630]/STATES[17], CONSTANTS[632]))*(1.00000+pow(STATES[17]/CONSTANTS[631], CONSTANTS[633]))); ALGEBRAIC[215] = CONSTANTS[626]/(1.00000+pow(CONSTANTS[629]/STATES[17], CONSTANTS[627])); ALGEBRAIC[216] = CONSTANTS[636]*(STATES[75]/(STATES[75]+CONSTANTS[637])); ALGEBRAIC[217] = 1.00000/(1.00000+( CONSTANTS[643]*CONSTANTS[644])/pow(CONSTANTS[643]+STATES[75], 2.00000)); ALGEBRAIC[48] = pow(CONSTANTS[84], CONSTANTS[85])/(pow(CONSTANTS[84], CONSTANTS[85])+pow(STATES[30], CONSTANTS[85])); ALGEBRAIC[220] = CONSTANTS[82]*(pow(STATES[8], 2.00000)/(pow(CONSTANTS[83], 2.00000)+pow(STATES[8], 2.00000)))*ALGEBRAIC[48]; ALGEBRAIC[221] = CONSTANTS[86]*pow(( CONSTANTS[104]*ALGEBRAIC[49]*STATES[31])/( CONSTANTS[104]*ALGEBRAIC[49]+ALGEBRAIC[50]), 4.00000)*(STATES[29] - STATES[8]); ALGEBRAIC[66] = pow(CONSTANTS[143], CONSTANTS[144])/(pow(CONSTANTS[143], CONSTANTS[144])+pow(STATES[35], CONSTANTS[144])); ALGEBRAIC[224] = CONSTANTS[141]*(pow(STATES[9], 2.00000)/(pow(CONSTANTS[142], 2.00000)+pow(STATES[9], 2.00000)))*ALGEBRAIC[66]; ALGEBRAIC[225] = CONSTANTS[145]*pow(( CONSTANTS[163]*ALGEBRAIC[67]*STATES[36])/( CONSTANTS[163]*ALGEBRAIC[67]+ALGEBRAIC[68]), 4.00000)*(STATES[34] - STATES[9]); ALGEBRAIC[84] = pow(CONSTANTS[202], CONSTANTS[203])/(pow(CONSTANTS[202], CONSTANTS[203])+pow(STATES[40], CONSTANTS[203])); ALGEBRAIC[228] = CONSTANTS[200]*(pow(STATES[10], 2.00000)/(pow(CONSTANTS[201], 2.00000)+pow(STATES[10], 2.00000)))*ALGEBRAIC[84]; ALGEBRAIC[229] = CONSTANTS[204]*pow(( CONSTANTS[222]*ALGEBRAIC[85]*STATES[41])/( CONSTANTS[222]*ALGEBRAIC[85]+ALGEBRAIC[86]), 4.00000)*(STATES[39] - STATES[10]); ALGEBRAIC[102] = pow(CONSTANTS[261], CONSTANTS[262])/(pow(CONSTANTS[261], CONSTANTS[262])+pow(STATES[45], CONSTANTS[262])); ALGEBRAIC[232] = CONSTANTS[259]*(pow(STATES[11], 2.00000)/(pow(CONSTANTS[260], 2.00000)+pow(STATES[11], 2.00000)))*ALGEBRAIC[102]; ALGEBRAIC[233] = CONSTANTS[263]*pow(( CONSTANTS[281]*ALGEBRAIC[103]*STATES[46])/( CONSTANTS[281]*ALGEBRAIC[103]+ALGEBRAIC[104]), 4.00000)*(STATES[44] - STATES[11]); ALGEBRAIC[120] = pow(CONSTANTS[320], CONSTANTS[321])/(pow(CONSTANTS[320], CONSTANTS[321])+pow(STATES[50], CONSTANTS[321])); ALGEBRAIC[236] = CONSTANTS[318]*(pow(STATES[12], 2.00000)/(pow(CONSTANTS[319], 2.00000)+pow(STATES[12], 2.00000)))*ALGEBRAIC[120]; ALGEBRAIC[237] = CONSTANTS[322]*pow(( CONSTANTS[340]*ALGEBRAIC[121]*STATES[51])/( CONSTANTS[340]*ALGEBRAIC[121]+ALGEBRAIC[122]), 4.00000)*(STATES[49] - STATES[12]); ALGEBRAIC[138] = pow(CONSTANTS[379], CONSTANTS[380])/(pow(CONSTANTS[379], CONSTANTS[380])+pow(STATES[55], CONSTANTS[380])); ALGEBRAIC[240] = CONSTANTS[377]*(pow(STATES[13], 2.00000)/(pow(CONSTANTS[378], 2.00000)+pow(STATES[13], 2.00000)))*ALGEBRAIC[138]; ALGEBRAIC[241] = CONSTANTS[381]*pow(( CONSTANTS[399]*ALGEBRAIC[139]*STATES[56])/( CONSTANTS[399]*ALGEBRAIC[139]+ALGEBRAIC[140]), 4.00000)*(STATES[54] - STATES[13]); ALGEBRAIC[156] = pow(CONSTANTS[438], CONSTANTS[439])/(pow(CONSTANTS[438], CONSTANTS[439])+pow(STATES[60], CONSTANTS[439])); ALGEBRAIC[244] = CONSTANTS[436]*(pow(STATES[14], 2.00000)/(pow(CONSTANTS[437], 2.00000)+pow(STATES[14], 2.00000)))*ALGEBRAIC[156]; ALGEBRAIC[245] = CONSTANTS[440]*pow(( CONSTANTS[458]*ALGEBRAIC[157]*STATES[61])/( CONSTANTS[458]*ALGEBRAIC[157]+ALGEBRAIC[158]), 4.00000)*(STATES[59] - STATES[14]); ALGEBRAIC[174] = pow(CONSTANTS[497], CONSTANTS[498])/(pow(CONSTANTS[497], CONSTANTS[498])+pow(STATES[65], CONSTANTS[498])); ALGEBRAIC[248] = CONSTANTS[495]*(pow(STATES[15], 2.00000)/(pow(CONSTANTS[496], 2.00000)+pow(STATES[15], 2.00000)))*ALGEBRAIC[174]; ALGEBRAIC[249] = CONSTANTS[499]*pow(( CONSTANTS[517]*ALGEBRAIC[175]*STATES[66])/( CONSTANTS[517]*ALGEBRAIC[175]+ALGEBRAIC[176]), 4.00000)*(STATES[64] - STATES[15]); ALGEBRAIC[192] = pow(CONSTANTS[556], CONSTANTS[557])/(pow(CONSTANTS[556], CONSTANTS[557])+pow(STATES[70], CONSTANTS[557])); ALGEBRAIC[252] = CONSTANTS[554]*(pow(STATES[16], 2.00000)/(pow(CONSTANTS[555], 2.00000)+pow(STATES[16], 2.00000)))*ALGEBRAIC[192]; ALGEBRAIC[253] = CONSTANTS[558]*pow(( CONSTANTS[576]*ALGEBRAIC[193]*STATES[71])/( CONSTANTS[576]*ALGEBRAIC[193]+ALGEBRAIC[194]), 4.00000)*(STATES[69] - STATES[16]); ALGEBRAIC[210] = pow(CONSTANTS[615], CONSTANTS[616])/(pow(CONSTANTS[615], CONSTANTS[616])+pow(STATES[75], CONSTANTS[616])); ALGEBRAIC[256] = CONSTANTS[613]*(pow(STATES[17], 2.00000)/(pow(CONSTANTS[614], 2.00000)+pow(STATES[17], 2.00000)))*ALGEBRAIC[210]; ALGEBRAIC[257] = CONSTANTS[617]*pow(( CONSTANTS[635]*ALGEBRAIC[211]*STATES[76])/( CONSTANTS[635]*ALGEBRAIC[211]+ALGEBRAIC[212]), 4.00000)*(STATES[74] - STATES[17]); ALGEBRAIC[38] = CONSTANTS[58]*exp( CONSTANTS[59]*STATES[1]); ALGEBRAIC[39] = (( CONSTANTS[61]*CONSTANTS[60])/( 2.00000*CONSTANTS[62]))*log(CONSTANTS[63]/STATES[18]); ALGEBRAIC[218] = ALGEBRAIC[38]*(STATES[1] - ALGEBRAIC[39]); ALGEBRAIC[41] = CONSTANTS[66]*(pow(CONSTANTS[69], CONSTANTS[67])/(pow(CONSTANTS[69], CONSTANTS[67])+pow(STATES[18], CONSTANTS[67]))); ALGEBRAIC[42] = ALGEBRAIC[41]*(STATES[1] - CONSTANTS[68]); ALGEBRAIC[45] = CONSTANTS[71]*(pow(STATES[18], 2.00000)/(pow(CONSTANTS[72], 2.00000)+pow(STATES[18], 2.00000))); ALGEBRAIC[258] = CONSTANTS[675]*(ALGEBRAIC[218]+ALGEBRAIC[42]+ALGEBRAIC[45]); ALGEBRAIC[40] = (( CONSTANTS[61]*CONSTANTS[60])/CONSTANTS[62])*log(CONSTANTS[65]/STATES[28]); ALGEBRAIC[219] = CONSTANTS[64]*(STATES[1] - ALGEBRAIC[40]); ALGEBRAIC[46] = CONSTANTS[73]*(pow(STATES[28], CONSTANTS[75])/(pow(CONSTANTS[74], CONSTANTS[75])+pow(STATES[28], CONSTANTS[75])))*(CONSTANTS[76] - STATES[1]); ALGEBRAIC[43] = CONSTANTS[70]*(pow(CONSTANTS[69], CONSTANTS[67])/(pow(CONSTANTS[69], CONSTANTS[67])+pow(STATES[18], CONSTANTS[67]))); ALGEBRAIC[44] = ALGEBRAIC[43]*(STATES[1] - CONSTANTS[68]); ALGEBRAIC[259] = CONSTANTS[675]*(ALGEBRAIC[44]+ALGEBRAIC[219]+ALGEBRAIC[46]); ALGEBRAIC[260] = ALGEBRAIC[258]+ALGEBRAIC[259]; ALGEBRAIC[56] = CONSTANTS[117]*exp( CONSTANTS[118]*STATES[1]); ALGEBRAIC[57] = (( CONSTANTS[120]*CONSTANTS[119])/( 2.00000*CONSTANTS[121]))*log(CONSTANTS[122]/STATES[19]); ALGEBRAIC[222] = ALGEBRAIC[56]*(STATES[1] - ALGEBRAIC[57]); ALGEBRAIC[59] = CONSTANTS[125]*(pow(CONSTANTS[128], CONSTANTS[126])/(pow(CONSTANTS[128], CONSTANTS[126])+pow(STATES[19], CONSTANTS[126]))); ALGEBRAIC[60] = ALGEBRAIC[59]*(STATES[1] - CONSTANTS[127]); ALGEBRAIC[63] = CONSTANTS[130]*(pow(STATES[19], 2.00000)/(pow(CONSTANTS[131], 2.00000)+pow(STATES[19], 2.00000))); ALGEBRAIC[261] = CONSTANTS[681]*(ALGEBRAIC[222]+ALGEBRAIC[60]+ALGEBRAIC[63]); ALGEBRAIC[58] = (( CONSTANTS[120]*CONSTANTS[119])/CONSTANTS[121])*log(CONSTANTS[124]/STATES[33]); ALGEBRAIC[223] = CONSTANTS[123]*(STATES[1] - ALGEBRAIC[58]); ALGEBRAIC[64] = CONSTANTS[132]*(pow(STATES[33], CONSTANTS[134])/(pow(CONSTANTS[133], CONSTANTS[134])+pow(STATES[33], CONSTANTS[134])))*(CONSTANTS[135] - STATES[1]); ALGEBRAIC[61] = CONSTANTS[129]*(pow(CONSTANTS[128], CONSTANTS[126])/(pow(CONSTANTS[128], CONSTANTS[126])+pow(STATES[19], CONSTANTS[126]))); ALGEBRAIC[62] = ALGEBRAIC[61]*(STATES[1] - CONSTANTS[127]); ALGEBRAIC[262] = CONSTANTS[681]*(ALGEBRAIC[62]+ALGEBRAIC[223]+ALGEBRAIC[64]); ALGEBRAIC[263] = ALGEBRAIC[261]+ALGEBRAIC[262]; ALGEBRAIC[74] = CONSTANTS[176]*exp( CONSTANTS[177]*STATES[1]); ALGEBRAIC[75] = (( CONSTANTS[179]*CONSTANTS[178])/( 2.00000*CONSTANTS[180]))*log(CONSTANTS[181]/STATES[20]); ALGEBRAIC[226] = ALGEBRAIC[74]*(STATES[1] - ALGEBRAIC[75]); ALGEBRAIC[77] = CONSTANTS[184]*(pow(CONSTANTS[187], CONSTANTS[185])/(pow(CONSTANTS[187], CONSTANTS[185])+pow(STATES[20], CONSTANTS[185]))); ALGEBRAIC[78] = ALGEBRAIC[77]*(STATES[1] - CONSTANTS[186]); ALGEBRAIC[81] = CONSTANTS[189]*(pow(STATES[20], 2.00000)/(pow(CONSTANTS[190], 2.00000)+pow(STATES[20], 2.00000))); ALGEBRAIC[264] = CONSTANTS[687]*(ALGEBRAIC[226]+ALGEBRAIC[78]+ALGEBRAIC[81]); ALGEBRAIC[76] = (( CONSTANTS[179]*CONSTANTS[178])/CONSTANTS[180])*log(CONSTANTS[183]/STATES[38]); ALGEBRAIC[227] = CONSTANTS[182]*(STATES[1] - ALGEBRAIC[76]); ALGEBRAIC[82] = CONSTANTS[191]*(pow(STATES[38], CONSTANTS[193])/(pow(CONSTANTS[192], CONSTANTS[193])+pow(STATES[38], CONSTANTS[193])))*(CONSTANTS[194] - STATES[1]); ALGEBRAIC[79] = CONSTANTS[188]*(pow(CONSTANTS[187], CONSTANTS[185])/(pow(CONSTANTS[187], CONSTANTS[185])+pow(STATES[20], CONSTANTS[185]))); ALGEBRAIC[80] = ALGEBRAIC[79]*(STATES[1] - CONSTANTS[186]); ALGEBRAIC[265] = CONSTANTS[687]*(ALGEBRAIC[80]+ALGEBRAIC[227]+ALGEBRAIC[82]); ALGEBRAIC[266] = ALGEBRAIC[264]+ALGEBRAIC[265]; ALGEBRAIC[92] = CONSTANTS[235]*exp( CONSTANTS[236]*STATES[1]); ALGEBRAIC[93] = (( CONSTANTS[238]*CONSTANTS[237])/( 2.00000*CONSTANTS[239]))*log(CONSTANTS[240]/STATES[21]); ALGEBRAIC[230] = ALGEBRAIC[92]*(STATES[1] - ALGEBRAIC[93]); ALGEBRAIC[95] = CONSTANTS[243]*(pow(CONSTANTS[246], CONSTANTS[244])/(pow(CONSTANTS[246], CONSTANTS[244])+pow(STATES[21], CONSTANTS[244]))); ALGEBRAIC[96] = ALGEBRAIC[95]*(STATES[1] - CONSTANTS[245]); ALGEBRAIC[99] = CONSTANTS[248]*(pow(STATES[21], 2.00000)/(pow(CONSTANTS[249], 2.00000)+pow(STATES[21], 2.00000))); ALGEBRAIC[267] = CONSTANTS[693]*(ALGEBRAIC[230]+ALGEBRAIC[96]+ALGEBRAIC[99]); ALGEBRAIC[94] = (( CONSTANTS[238]*CONSTANTS[237])/CONSTANTS[239])*log(CONSTANTS[242]/STATES[43]); ALGEBRAIC[231] = CONSTANTS[241]*(STATES[1] - ALGEBRAIC[94]); ALGEBRAIC[100] = CONSTANTS[250]*(pow(STATES[43], CONSTANTS[252])/(pow(CONSTANTS[251], CONSTANTS[252])+pow(STATES[43], CONSTANTS[252])))*(CONSTANTS[253] - STATES[1]); ALGEBRAIC[97] = CONSTANTS[247]*(pow(CONSTANTS[246], CONSTANTS[244])/(pow(CONSTANTS[246], CONSTANTS[244])+pow(STATES[21], CONSTANTS[244]))); ALGEBRAIC[98] = ALGEBRAIC[97]*(STATES[1] - CONSTANTS[245]); ALGEBRAIC[268] = CONSTANTS[693]*(ALGEBRAIC[98]+ALGEBRAIC[231]+ALGEBRAIC[100]); ALGEBRAIC[269] = ALGEBRAIC[267]+ALGEBRAIC[268]; ALGEBRAIC[110] = CONSTANTS[294]*exp( CONSTANTS[295]*STATES[1]); ALGEBRAIC[111] = (( CONSTANTS[297]*CONSTANTS[296])/( 2.00000*CONSTANTS[298]))*log(CONSTANTS[299]/STATES[22]); ALGEBRAIC[234] = ALGEBRAIC[110]*(STATES[1] - ALGEBRAIC[111]); ALGEBRAIC[113] = CONSTANTS[302]*(pow(CONSTANTS[305], CONSTANTS[303])/(pow(CONSTANTS[305], CONSTANTS[303])+pow(STATES[22], CONSTANTS[303]))); ALGEBRAIC[114] = ALGEBRAIC[113]*(STATES[1] - CONSTANTS[304]); ALGEBRAIC[117] = CONSTANTS[307]*(pow(STATES[22], 2.00000)/(pow(CONSTANTS[308], 2.00000)+pow(STATES[22], 2.00000))); ALGEBRAIC[270] = CONSTANTS[699]*(ALGEBRAIC[234]+ALGEBRAIC[114]+ALGEBRAIC[117]); ALGEBRAIC[112] = (( CONSTANTS[297]*CONSTANTS[296])/CONSTANTS[298])*log(CONSTANTS[301]/STATES[48]); ALGEBRAIC[235] = CONSTANTS[300]*(STATES[1] - ALGEBRAIC[112]); ALGEBRAIC[118] = CONSTANTS[309]*(pow(STATES[48], CONSTANTS[311])/(pow(CONSTANTS[310], CONSTANTS[311])+pow(STATES[48], CONSTANTS[311])))*(CONSTANTS[312] - STATES[1]); ALGEBRAIC[115] = CONSTANTS[306]*(pow(CONSTANTS[305], CONSTANTS[303])/(pow(CONSTANTS[305], CONSTANTS[303])+pow(STATES[22], CONSTANTS[303]))); ALGEBRAIC[116] = ALGEBRAIC[115]*(STATES[1] - CONSTANTS[304]); ALGEBRAIC[271] = CONSTANTS[699]*(ALGEBRAIC[116]+ALGEBRAIC[235]+ALGEBRAIC[118]); ALGEBRAIC[272] = ALGEBRAIC[270]+ALGEBRAIC[271]; ALGEBRAIC[128] = CONSTANTS[353]*exp( CONSTANTS[354]*STATES[1]); ALGEBRAIC[129] = (( CONSTANTS[356]*CONSTANTS[355])/( 2.00000*CONSTANTS[357]))*log(CONSTANTS[358]/STATES[23]); ALGEBRAIC[238] = ALGEBRAIC[128]*(STATES[1] - ALGEBRAIC[129]); ALGEBRAIC[131] = CONSTANTS[361]*(pow(CONSTANTS[364], CONSTANTS[362])/(pow(CONSTANTS[364], CONSTANTS[362])+pow(STATES[23], CONSTANTS[362]))); ALGEBRAIC[132] = ALGEBRAIC[131]*(STATES[1] - CONSTANTS[363]); ALGEBRAIC[135] = CONSTANTS[366]*(pow(STATES[23], 2.00000)/(pow(CONSTANTS[367], 2.00000)+pow(STATES[23], 2.00000))); ALGEBRAIC[273] = CONSTANTS[705]*(ALGEBRAIC[238]+ALGEBRAIC[132]+ALGEBRAIC[135]); ALGEBRAIC[130] = (( CONSTANTS[356]*CONSTANTS[355])/CONSTANTS[357])*log(CONSTANTS[360]/STATES[53]); ALGEBRAIC[239] = CONSTANTS[359]*(STATES[1] - ALGEBRAIC[130]); ALGEBRAIC[136] = CONSTANTS[368]*(pow(STATES[53], CONSTANTS[370])/(pow(CONSTANTS[369], CONSTANTS[370])+pow(STATES[53], CONSTANTS[370])))*(CONSTANTS[371] - STATES[1]); ALGEBRAIC[133] = CONSTANTS[365]*(pow(CONSTANTS[364], CONSTANTS[362])/(pow(CONSTANTS[364], CONSTANTS[362])+pow(STATES[23], CONSTANTS[362]))); ALGEBRAIC[134] = ALGEBRAIC[133]*(STATES[1] - CONSTANTS[363]); ALGEBRAIC[274] = CONSTANTS[705]*(ALGEBRAIC[134]+ALGEBRAIC[239]+ALGEBRAIC[136]); ALGEBRAIC[275] = ALGEBRAIC[273]+ALGEBRAIC[274]; ALGEBRAIC[146] = CONSTANTS[412]*exp( CONSTANTS[413]*STATES[1]); ALGEBRAIC[147] = (( CONSTANTS[415]*CONSTANTS[414])/( 2.00000*CONSTANTS[416]))*log(CONSTANTS[417]/STATES[24]); ALGEBRAIC[242] = ALGEBRAIC[146]*(STATES[1] - ALGEBRAIC[147]); ALGEBRAIC[149] = CONSTANTS[420]*(pow(CONSTANTS[423], CONSTANTS[421])/(pow(CONSTANTS[423], CONSTANTS[421])+pow(STATES[24], CONSTANTS[421]))); ALGEBRAIC[150] = ALGEBRAIC[149]*(STATES[1] - CONSTANTS[422]); ALGEBRAIC[153] = CONSTANTS[425]*(pow(STATES[24], 2.00000)/(pow(CONSTANTS[426], 2.00000)+pow(STATES[24], 2.00000))); ALGEBRAIC[276] = CONSTANTS[711]*(ALGEBRAIC[242]+ALGEBRAIC[150]+ALGEBRAIC[153]); ALGEBRAIC[148] = (( CONSTANTS[415]*CONSTANTS[414])/CONSTANTS[416])*log(CONSTANTS[419]/STATES[58]); ALGEBRAIC[243] = CONSTANTS[418]*(STATES[1] - ALGEBRAIC[148]); ALGEBRAIC[154] = CONSTANTS[427]*(pow(STATES[58], CONSTANTS[429])/(pow(CONSTANTS[428], CONSTANTS[429])+pow(STATES[58], CONSTANTS[429])))*(CONSTANTS[430] - STATES[1]); ALGEBRAIC[151] = CONSTANTS[424]*(pow(CONSTANTS[423], CONSTANTS[421])/(pow(CONSTANTS[423], CONSTANTS[421])+pow(STATES[24], CONSTANTS[421]))); ALGEBRAIC[152] = ALGEBRAIC[151]*(STATES[1] - CONSTANTS[422]); ALGEBRAIC[277] = CONSTANTS[711]*(ALGEBRAIC[152]+ALGEBRAIC[243]+ALGEBRAIC[154]); ALGEBRAIC[278] = ALGEBRAIC[276]+ALGEBRAIC[277]; ALGEBRAIC[164] = CONSTANTS[471]*exp( CONSTANTS[472]*STATES[1]); ALGEBRAIC[165] = (( CONSTANTS[474]*CONSTANTS[473])/( 2.00000*CONSTANTS[475]))*log(CONSTANTS[476]/STATES[25]); ALGEBRAIC[246] = ALGEBRAIC[164]*(STATES[1] - ALGEBRAIC[165]); ALGEBRAIC[167] = CONSTANTS[479]*(pow(CONSTANTS[482], CONSTANTS[480])/(pow(CONSTANTS[482], CONSTANTS[480])+pow(STATES[25], CONSTANTS[480]))); ALGEBRAIC[168] = ALGEBRAIC[167]*(STATES[1] - CONSTANTS[481]); ALGEBRAIC[171] = CONSTANTS[484]*(pow(STATES[25], 2.00000)/(pow(CONSTANTS[485], 2.00000)+pow(STATES[25], 2.00000))); ALGEBRAIC[279] = CONSTANTS[717]*(ALGEBRAIC[246]+ALGEBRAIC[168]+ALGEBRAIC[171]); ALGEBRAIC[166] = (( CONSTANTS[474]*CONSTANTS[473])/CONSTANTS[475])*log(CONSTANTS[478]/STATES[63]); ALGEBRAIC[247] = CONSTANTS[477]*(STATES[1] - ALGEBRAIC[166]); ALGEBRAIC[172] = CONSTANTS[486]*(pow(STATES[63], CONSTANTS[488])/(pow(CONSTANTS[487], CONSTANTS[488])+pow(STATES[63], CONSTANTS[488])))*(CONSTANTS[489] - STATES[1]); ALGEBRAIC[169] = CONSTANTS[483]*(pow(CONSTANTS[482], CONSTANTS[480])/(pow(CONSTANTS[482], CONSTANTS[480])+pow(STATES[25], CONSTANTS[480]))); ALGEBRAIC[170] = ALGEBRAIC[169]*(STATES[1] - CONSTANTS[481]); ALGEBRAIC[280] = CONSTANTS[717]*(ALGEBRAIC[170]+ALGEBRAIC[247]+ALGEBRAIC[172]); ALGEBRAIC[281] = ALGEBRAIC[279]+ALGEBRAIC[280]; ALGEBRAIC[182] = CONSTANTS[530]*exp( CONSTANTS[531]*STATES[1]); ALGEBRAIC[183] = (( CONSTANTS[533]*CONSTANTS[532])/( 2.00000*CONSTANTS[534]))*log(CONSTANTS[535]/STATES[26]); ALGEBRAIC[250] = ALGEBRAIC[182]*(STATES[1] - ALGEBRAIC[183]); ALGEBRAIC[185] = CONSTANTS[538]*(pow(CONSTANTS[541], CONSTANTS[539])/(pow(CONSTANTS[541], CONSTANTS[539])+pow(STATES[26], CONSTANTS[539]))); ALGEBRAIC[186] = ALGEBRAIC[185]*(STATES[1] - CONSTANTS[540]); ALGEBRAIC[189] = CONSTANTS[543]*(pow(STATES[26], 2.00000)/(pow(CONSTANTS[544], 2.00000)+pow(STATES[26], 2.00000))); ALGEBRAIC[282] = CONSTANTS[723]*(ALGEBRAIC[250]+ALGEBRAIC[186]+ALGEBRAIC[189]); ALGEBRAIC[184] = (( CONSTANTS[533]*CONSTANTS[532])/CONSTANTS[534])*log(CONSTANTS[537]/STATES[68]); ALGEBRAIC[251] = CONSTANTS[536]*(STATES[1] - ALGEBRAIC[184]); ALGEBRAIC[190] = CONSTANTS[545]*(pow(STATES[68], CONSTANTS[547])/(pow(CONSTANTS[546], CONSTANTS[547])+pow(STATES[68], CONSTANTS[547])))*(CONSTANTS[548] - STATES[1]); ALGEBRAIC[187] = CONSTANTS[542]*(pow(CONSTANTS[541], CONSTANTS[539])/(pow(CONSTANTS[541], CONSTANTS[539])+pow(STATES[26], CONSTANTS[539]))); ALGEBRAIC[188] = ALGEBRAIC[187]*(STATES[1] - CONSTANTS[540]); ALGEBRAIC[283] = CONSTANTS[723]*(ALGEBRAIC[188]+ALGEBRAIC[251]+ALGEBRAIC[190]); ALGEBRAIC[284] = ALGEBRAIC[282]+ALGEBRAIC[283]; ALGEBRAIC[200] = CONSTANTS[589]*exp( CONSTANTS[590]*STATES[1]); ALGEBRAIC[201] = (( CONSTANTS[592]*CONSTANTS[591])/( 2.00000*CONSTANTS[593]))*log(CONSTANTS[594]/STATES[27]); ALGEBRAIC[254] = ALGEBRAIC[200]*(STATES[1] - ALGEBRAIC[201]); ALGEBRAIC[203] = CONSTANTS[597]*(pow(CONSTANTS[600], CONSTANTS[598])/(pow(CONSTANTS[600], CONSTANTS[598])+pow(STATES[27], CONSTANTS[598]))); ALGEBRAIC[204] = ALGEBRAIC[203]*(STATES[1] - CONSTANTS[599]); ALGEBRAIC[207] = CONSTANTS[602]*(pow(STATES[27], 2.00000)/(pow(CONSTANTS[603], 2.00000)+pow(STATES[27], 2.00000))); ALGEBRAIC[285] = CONSTANTS[729]*(ALGEBRAIC[254]+ALGEBRAIC[204]+ALGEBRAIC[207]); ALGEBRAIC[202] = (( CONSTANTS[592]*CONSTANTS[591])/CONSTANTS[593])*log(CONSTANTS[596]/STATES[73]); ALGEBRAIC[255] = CONSTANTS[595]*(STATES[1] - ALGEBRAIC[202]); ALGEBRAIC[208] = CONSTANTS[604]*(pow(STATES[73], CONSTANTS[606])/(pow(CONSTANTS[605], CONSTANTS[606])+pow(STATES[73], CONSTANTS[606])))*(CONSTANTS[607] - STATES[1]); ALGEBRAIC[205] = CONSTANTS[601]*(pow(CONSTANTS[600], CONSTANTS[598])/(pow(CONSTANTS[600], CONSTANTS[598])+pow(STATES[27], CONSTANTS[598]))); ALGEBRAIC[206] = ALGEBRAIC[205]*(STATES[1] - CONSTANTS[599]); ALGEBRAIC[286] = CONSTANTS[729]*(ALGEBRAIC[206]+ALGEBRAIC[255]+ALGEBRAIC[208]); ALGEBRAIC[287] = ALGEBRAIC[285]+ALGEBRAIC[286]; } void getStateInformation(double* SI) { SI[0] = 1.0; SI[1] = 1.0; SI[2] = 1.0; SI[3] = 1.0; SI[4] = 1.0; SI[5] = 1.0; SI[6] = 1.0; SI[7] = 1.0; SI[8] = 1.0; SI[9] = 1.0; SI[10] = 1.0; SI[11] = 1.0; SI[12] = 1.0; SI[13] = 1.0; SI[14] = 1.0; SI[15] = 1.0; SI[16] = 1.0; SI[17] = 1.0; SI[18] = 1.0; SI[19] = 1.0; SI[20] = 1.0; SI[21] = 1.0; SI[22] = 1.0; SI[23] = 1.0; SI[24] = 1.0; SI[25] = 1.0; SI[26] = 1.0; SI[27] = 1.0; SI[28] = 1.0; SI[29] = 1.0; SI[30] = 1.0; SI[31] = 1.0; SI[32] = 1.0; SI[33] = 1.0; SI[34] = 1.0; SI[35] = 1.0; SI[36] = 1.0; SI[37] = 1.0; SI[38] = 1.0; SI[39] = 1.0; SI[40] = 1.0; SI[41] = 1.0; SI[42] = 1.0; SI[43] = 1.0; SI[44] = 1.0; SI[45] = 1.0; SI[46] = 1.0; SI[47] = 1.0; SI[48] = 1.0; SI[49] = 1.0; SI[50] = 1.0; SI[51] = 1.0; SI[52] = 1.0; SI[53] = 1.0; SI[54] = 1.0; SI[55] = 1.0; SI[56] = 1.0; SI[57] = 1.0; SI[58] = 1.0; SI[59] = 1.0; SI[60] = 1.0; SI[61] = 1.0; SI[62] = 1.0; SI[63] = 1.0; SI[64] = 1.0; SI[65] = 1.0; SI[66] = 1.0; SI[67] = 1.0; SI[68] = 1.0; SI[69] = 1.0; SI[70] = 1.0; SI[71] = 1.0; SI[72] = 1.0; SI[73] = 1.0; SI[74] = 1.0; SI[75] = 1.0; SI[76] = 1.0; SI[77] = 1.0; } void computeRoots(double VOI, double* CONSTANTS, double* RATES, double* OLDRATES, double* STATES, double* OLDSTATES, double* ALGEBRAIC, double* CONDVARS) { }