{ "ANCILLARIES": { "hL": { "A": [ 135.53626970557147, -388.1009304925033, 50.91308516523669, -3.2764935284420478, 0.12490160716973386, -0.0028402598737871303, 3.565065637878207e-05, -1.9102234172275015e-07 ], "B": [ 1, -0.025721433434882115 ], "Tmax": 38.24, "Tmin": 18.724, "_note": "coefficients are in increasing order; input in K, output in J/mol; value is enthalpy minus hs_anchor enthalpy", "max_abs_error": 2.3822882564267047, "max_abs_error_units": "J/mol", "type": "rational_polynomial" }, "hLV": { "A": [ -2546.7671669395827, 1004.4820028698515, -119.93744848161685, 7.684524242014701, -0.29435898629900137, 0.006718972909022583, -8.456921750980904e-05, 4.539581180455923e-07 ], "B": [ 1, -0.025693776246163893 ], "Tmax": 38.24, "Tmin": 18.724, "_note": "coefficients are in increasing order; input in K, output in J/mol; value is enthalpy minus hs_anchor enthalpy", "max_abs_error": 5.159212217082853, "max_abs_error_units": "J/mol", "type": "rational_polynomial" }, "pS": { "T_r": 38.34, "Tmax": 38.33999999999991, "Tmin": 18.72400000000001, "description": "p'' = pc*exp(Tc/T*sum(n_i*theta^t_i))", "max_abserror_percentage": 0.005249129888240667, "n": [ -5.962797925166512, 6.758820005764522, -5.349436200589799, 0.6830724644326415, -321.7646727432708, 338.2279808105484 ], "reducing_value": 1679600.0, "t": [ 1.011, 1.564, 1.694, 2.339, 12.299, 12.417 ], "type": "pV", "using_tau_r": true }, "rhoL": { "T_r": 38.34, "Tmax": 38.33999999999991, "Tmin": 18.72400000000001, "description": "rho' = rhoc*(1+sum(n_i*theta^t_i))", "max_abserror_percentage": 0.021925540249734254, "n": [ 0.7561385728476524, 7.456420463900972, -7.667110838528095, 31.91516196841129, -55.84889038663615, 25.60708660267712 ], "reducing_value": 17230.0, "t": [ 0.433, 0.632, 0.773, 2.187, 2.427, 2.681 ], "type": "rhoLnoexp", "using_tau_r": false }, "rhoV": { "T_r": 38.34, "Tmax": 38.33999999999991, "Tmin": 18.72400000000001, "description": "rho'' = rhoc*exp(Tc/T*sum(n_i*theta^t_i))", "max_abserror_percentage": 0.10580823435766273, "n": [ 0.2331216679164502, -3.698059063742354, 0.4327794907483545, -0.5108769415735642, 2131.2963725894447, -3924.052231017246 ], "reducing_value": 17230.0, "t": [ 0.324, 0.491, 1.733, 2.191, 15.506, 16.417 ], "type": "rhoV", "using_tau_r": true }, "sL": { "A": [ -31.879437568058894, -5.021226682096519, 0.9629244894895828, -0.0682237519748542, 0.0027114420448969175, -6.31632767012641e-05, 8.057802215302281e-07, -4.3655091755175945e-09 ], "B": [ 1, -0.025728388269776956 ], "Tmax": 38.24, "Tmin": 18.724, "_note": "coefficients are in increasing order; 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T = c[0]*rho^3 + c[1]*rho^2 + c[2]*rho + c[3] with rho in mol/m^3 and T in K", "cL": [ 0.0, 0.0, -2.174063770932284e-06, 38.37745911877317 ], "cV": [ 0.0, 0.0, 2.1783706563740146e-06, 38.30246667359068 ], "rhomolar_max": 17385.995636942647, "rhomolar_min": 17074.312784095087 }, "gas_constant": 8.3144621, "gas_constant_units": "J/mol/K", "molar_mass": 0.0040282, "molar_mass_units": "kg/mol", "p_max": 2000000000, "p_max_units": "Pa", "pseudo_pure": false } ], "INFO": { "ALIASES": [ "orthodeuterium", "ORTHODEUTERIUM" ], "CAS": "7782-39-0o", "NAME": "OrthoDeuterium", "REFPROP_NAME": "N/A" }, "STATES": { "critical": { "T": 38.34, "T_units": "K", "hmolar": 843.971942147592, "hmolar_units": "J/mol", "p": 1679600.0, "p_units": "Pa", "rhomolar": 17230.0, "rhomolar_units": "mol/m^3", "smolar": 24.015368000900626, "smolar_units": "J/mol/K" }, "triple_liquid": { "T": 18.724, "T_units": "K", "hmolar": -122.72698608572578, "hmolar_units": "J/mol", "p": 17189.101989626473, "p_units": "Pa", "rhomolar": 43350.92089036226, "rhomolar_units": "mol/m^3", "smolar": -5.703950095737031, "smolar_units": "J/mol/K" }, "triple_vapor": { "T": 18.724, "T_units": "K", "hmolar": 1152.6421997805164, "hmolar_units": "J/mol", "p": 17189.119025752974, "p_units": "Pa", "rhomolar": 112.95651812405146, "rhomolar_units": "mol/m^3", "smolar": 62.41018336406749, "smolar_units": "J/mol/K" } } }