Thermodynamic Behaviour of Viscous Variable Chaplygin Gas in a Flat Universe

dc.contributor.authorBarman, Purna Chandra
dc.contributor.authorBarman, Abhinath
dc.date.accessioned2026-04-22T09:03:47Z
dc.date.issued2026
dc.description.abstractIn this manuscript we have studied the thermodynamic stability of the viscous variable Chaplygin gas (VVCG) model. The equation of state p = −B ρ is employed, where B = B0V −n 3 and B0 is a positive universal constant. The bulk viscosity coefficient ξ = ξ0ρ 1 2 has also been included in our research. When a fluid satisfies the established stability requirements, we obtain the intriguing conclusion that ( ∂peff ∂V )S < 0 and ( ∂peff ∂V )T < 0 throughout the evolution for ξ0 < 0, when n without a certainty, are limited to the negative values. Additionally, the third law of thermodynamics is assured to be valid in this instance, as is the positivity of thermal heat capacity (cV ). Also we have discussed that how thermal variables depend on either temperature or volume. A new general equation of state for the VVCG model as a function of volume and temperature is obtained during the thermal process, which also shows that the cosmos is thermodynamically stable. Furthermore, the thermal and caloric equation-of-state parameters coincide at large volume in the limit T → 0.
dc.identifier.issn3049-026X
dc.identifier.urihttps://ir.nbu.ac.in/handle/123456789/5774
dc.language.isoen
dc.publisherUniversity of North Bengal
dc.subjectThermodynamic Behaviour
dc.subjectViscous Variable Chaplygin Gas (VVCG) model
dc.titleThermodynamic Behaviour of Viscous Variable Chaplygin Gas in a Flat Universe
dc.title.alternativeJournal of Physics Research and Education, Vol. 3, March-2026, pp. 66-87
dc.typeArticle
periodical.editorMali, Provash
periodical.nameJournal of Physics Research and Education
periodical.pageEnd87
periodical.pageStart66
periodical.volumeNumber03

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