Biphenyl: Experimental And Derived Thermodynamic Properties
National Institute of Standards and Technology
@usgov.national_institute_of_standard_biphenyl_experimental_a_30c80ec2
National Institute of Standards and Technology
@usgov.national_institute_of_standard_biphenyl_experimental_a_30c80ec2
This document is part of a series of reports describing experimental property measurements completed at the National Institute for Petroleum and Energy Research (NIPER) in Bartlesville, Oklahoma, in the 1980s and 1990s. Members of the Bartlesville Thermodynamics Group included William D. "Bill" Good, William V. "Bill" Steele, Bruce E. Gammon, Norris K. Smith, Stephen E. Knipmeyer, An "Andy" Nguyen, Timothy D. Klots, I. A. "Alex" Hossenlopp, Aaron P. Rau, William B. Collier, John F. Messerly, Ann G. Osborn, Susan Lee-Bechtold, Donald G. Archer, Ian R. Tasker, Allan B. Cowell, Michael M. Strube, and the author of this report. A summary of the measurements reported here is given in Table 1, together with a list of experimental results that were reported previously and used in the generation of the derived properties.
Organization: National Institute of Standards and Technology
Last updated: 2024-05-15T10:39:35.135881
Tags: density, enthalpy-of-formation, heat-capacity, thermodynamic-functions, vapor-pressure
CREATE TABLE revised_derived_enthalpies_of_vaporization (
"t_k" DOUBLE,
"unnamed_1" VARCHAR -- Unnamed: 1,
"n__delta_l_g_h_m_kj_mol_1" DOUBLE -- .Delta. {l}^{g}H M / (kJ Mol-1),
"u_delta_l_g_h_m_kj_mol_1" DOUBLE -- U(.Delta. {l}^{g}H M) / (kJ Mol-1)
);CREATE TABLE revised_derived_heat_capacities_by_dsc (
"t_k" BIGINT -- T / K,
"c_sat_m_r" DOUBLE -- C {sat,m} / R,
"u_c_sat_m_r" DOUBLE -- U(C {sat,m}) / R
);CREATE TABLE revised_derived_ideal_gas_properties (
"t_k" DOUBLE -- T / K,
"unnamed_1" VARCHAR -- Unnamed: 1,
"unnamed_2" VARCHAR -- Unnamed: 2,
"n__delta_0_t_h_o_m_rt" DOUBLE -- .Delta. {0}^{T}H^{o} {m} / (RT),
"n__delta_imp_h_m_rt" DOUBLE -- .Delta. {imp}H {m} / (RT),
"n__delta_0_t_s_o_m_r" DOUBLE -- .Delta. {0}^{T}S^{o} {m} / R,
"n__delta_imp_s_m_r" DOUBLE -- .Delta. {imp}S {m} / R,
"n__delta_f_h_o_m_rt" DOUBLE -- .Delta. {f}H^{o} {m} / (RT),
"n__delta_f_s_o_m_r" DOUBLE -- .Delta. {f}S^{o} {m} / R,
"n__delta_f_g_o_m_rt" DOUBLE -- .Delta. {f}G^{o} {m} / (RT),
"unnamed_10" VARCHAR -- Unnamed: 10,
"u_delta_0_t_h_o_m_rt" DOUBLE -- U(.Delta. {0}^{T}H^{o} {m}) / (RT),
"u_delta_0_t_s_o_m_r" DOUBLE -- U(.Delta. {0}^{T}S^{o} {m}) / R,
"u_delta_f_h_o_m_rt" DOUBLE -- U(.Delta. {f}H^{o} {m}) / (RT),
"u_delta_f_s_o_m_r" DOUBLE -- U(.Delta. {f}S^{o} {m}) / R,
"u_delta_f_g_o_m_rt" DOUBLE -- U(.Delta. {f}G^{o} {m}) / (RT)
);CREATE TABLE revised_derived_thermodynamic_functions (
"phase" VARCHAR,
"t_k" DOUBLE -- T / K,
"unnamed_2" VARCHAR -- Unnamed: 2,
"n__delta_0_t_s_m_r" DOUBLE -- .Delta. {0}^{T}S M / R,
"u_delta_0_t_s_m_r" DOUBLE -- U(.Delta. {0}^{T}S M) / R,
"n__delta_0_t_h_m_rt" DOUBLE -- .Delta. {0}^{T}H M / (RT),
"u_delta_0_t_h_m_rt" DOUBLE -- U(.Delta. {0}^{T}H M) / (RT)
);Anyone who has the link will be able to view this.