format version = 1.0 begin solution of problem pe_3genes2f date = 8-Jun-09 15:24:13 url = http://www.odeidentification.org // Settings for the Gennemark & Wedelin (2007) algorithm randomStarts_ = 60 1 smoothingParameter = 1. randomSeed = 6 // VARIABLE 3 reaction_1 of variable_3 has type = mrnaProduction has variable X1 = variable_1 has variable X2 = variable_2 has parameter k1 = 0.100000000000E-11 has parameter k2 = 0.100000000000E-11 has parameter k3 = 0.100000000000E+02 has parameter k4 = 0.229675415151E+04 has parameter k5 = 0.100000000000E+02 reaction_2 of variable_3 has type = uniMolecularMassAction has variable X1 = variable_3 has parameter k1 = -0.648697119740E+00 // VARIABLE 4 reaction_1 of variable_4 has type = mrnaProduction has variable X1 = variable_1 has variable X2 = variable_9 has parameter k1 = 0.368990757134E+01 has parameter k2 = 0.100112372640E+01 has parameter k3 = 0.186375985768E+01 has parameter k4 = 0.867287531852E+00 has parameter k5 = 0.214121951069E+01 reaction_2 of variable_4 has type = uniMolecularMassAction has variable X1 = variable_4 has parameter k1 = -0.382171290245E+01 // VARIABLE 5 reaction_1 of variable_5 has type = mrnaProduction has variable X1 = variable_1 has variable X2 = variable_10 has parameter k1 = 0.188238642088E-01 has parameter k2 = 0.100000000000E-11 has parameter k3 = 0.233093093883E+01 has parameter k4 = 0.801930237314E+00 has parameter k5 = 0.953395918745E+01 reaction_2 of variable_5 has type = uniMolecularMassAction has variable X1 = variable_5 has parameter k1 = -0.989712900041E-01 // VARIABLE 6 reaction_1 of variable_6 has type = michaelisMenten has variable X1 = variable_3 has parameter k1 = 0.345113469726E-05 has parameter k2 = 0.378555360181E+01 reaction_2 of variable_6 has type = uniMolecularMassAction has variable X1 = variable_6 has parameter k1 = -0.639347410289E-01 // VARIABLE 7 reaction_1 of variable_7 has type = michaelisMenten has variable X1 = variable_4 has parameter k1 = 0.862547833485E-01 has parameter k2 = 0.801913931349E+00 reaction_2 of variable_7 has type = uniMolecularMassAction has variable X1 = variable_7 has parameter k1 = -0.100839274282E+00 // VARIABLE 8 reaction_1 of variable_8 has type = michaelisMenten has variable X1 = variable_5 has parameter k1 = 0.157148539082E-10 has parameter k2 = 0.464689180788E+01 reaction_2 of variable_8 has type = uniMolecularMassAction has variable X1 = variable_8 has parameter k1 = -0.399639253091E-01 // VARIABLE 9 reaction_1 of variable_9 has type = reversibleEnzymatic has variable X1 = variable_6 has variable X2 = variable_2 has variable X3 = variable_9 has parameter k1 = 0.144102883800E+01 has parameter k2 = 0.223033948224E+01 has parameter k3 = 0.112278589614E+03 reaction_2 of variable_9 has type = reversibleEnzymatic has variable X1 = variable_7 has variable X2 = variable_9 has variable X3 = variable_10 has parameter k1 = -0.113318234091E+00 has parameter k2 = 0.402061822082E-07 has parameter k3 = 0.297564170972E+00 // VARIABLE 10 reaction_1 of variable_10 has type = reversibleEnzymatic has variable X1 = variable_7 has variable X2 = variable_9 has variable X3 = variable_10 has parameter k1 = 0.113318234091E+00 has parameter k2 = 0.402061822082E-07 has parameter k3 = 0.297564170972E+00 reaction_2 of variable_10 has type = reversibleEnzymatic has variable X1 = variable_8 has variable X2 = variable_10 has variable X3 = variable_1 has parameter k1 = -0.475862232553E+02 has parameter k2 = 0.938389615497E+02 has parameter k3 = 0.677597495711E+03 // INITIAL VALUES // Perfect data, not required // ERROR // residual = -L residual = 589060.183 end of solution of problem pe_3genes2f