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Thermodynamic Properties of Liquid Toluene from Speed-of-Sound Measurements at Temperatures from 283.15 K to 473.15 K and at Pressures up to 390 MPa

Subash Dhakal, Weparn J. Tay, Saif Z.S. Al Ghafri, Darren Rowland, Sean P. Mullins, Eric F. May, J. P. Martin Trusler, Paul L. Stanwix

2021International Journal of Thermophysics12 citationsDOIOpen Access PDF

Topics & Concepts

Isobaric processIsochoric processSpeed of soundHeat capacityThermodynamicsCompressibilityIsentropic processMaterials scienceHelmholtz free energyEquation of stateIsothermal processStandard deviationPhysicsMathematicsStatisticsPhase Equilibria and ThermodynamicsChemical Thermodynamics and Molecular StructureThermodynamic properties of mixtures
Thermodynamic Properties of Liquid Toluene from Speed-of-Sound Measurements at Temperatures from 283.15 K to 473.15 K and at Pressures up to 390 MPa | Litcius