Excess molar enthalpies of (benzene or methylbenzene or ethylbenzene + 2-methylethylbenzene) at the temperatures 298.15 K, 308.15 K, and 318.15 K
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Materials Science,Atomic and Molecular Physics, and Optics
Reference14 articles.
1. Excess enthalpies of binary mixtures of benzene with n-propylbenzene, n-butylbenzene, n-hexylbenzene AT 298.15, 308.15 and 318.15 K
2. Excess molar volumes of binary mixtures of benzene +n-propylbenzene, +n-butylbenzene and +n-hexylbenzene at 298.15, 308.15 and 318.15 K
3. Organic Solvents;Riddick,1970
4. A Flow Micro Reaction Calorimeter.
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1. The impressive impact of including enthalpy and heat capacity of mixing data when parameterising equations of state. Application to the development of the E-PPR78 (Enhanced-Predictive-Peng-Robinson-78) model.;Fluid Phase Equilibria;2022-09
2. Enthalpy and Heat Capacity Changes on Mixing: Fundamental Aspects and Prediction by Means of the PPR78 Cubic Equation of State;Energy & Fuels;2013-10-17
3. Excess enthaplies of binary mixtures toluene + propylbenzene, + butylbenzene and + hexylbenzene at 298.15, 308.15 and 318.15 K;Fluid Phase Equilibria;1994-12
4. Excess molar volumes of 2-methylethylbenzene with benzene, methylbenzene or ethylbenzene at various temperatures;Journal of Solution Chemistry;1994-07
5. Thermodynamics of binary mixtures of alkylbenzenes: Role of orientational order in benzene + alkylbenzene mixtures;Pure and Applied Chemistry;1994-01-01
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