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9: Enthalpy

  • Page ID
    7269
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    • 9.1: Enthalpy
      This page introduces enthalpy, defined as \(H = U + PV\), relating it to heat in isobaric processes. It discusses key thermodynamic relationships and derivatives involving enthalpy and internal energy, leading to Maxwell's Relations, and clarifies the differences between heat capacities at constant volume and pressure.
    • 9.2: Change of State
      This page covers latent heat, focusing on its role in phase changes such as freezing and vaporization, where temperature remains constant. It introduces specific and molar latent heats and clarifies common misconceptions, providing values for water's latent heats of fusion and vaporization. The page also addresses differences in phase transition points between crystalline and amorphous substances.
    • 9.3: Latent Heat and Enthalpy
      This page explains thermodynamic principles of liquid phase change at boiling point, focusing on vaporization heat. It calculates work done by vapor at constant pressure and establishes a relationship between internal energy and enthalpy changes. It clarifies that the enthalpy increase during an isobaric process equals the latent heat supplied, emphasizing the relationship between added heat and enthalpy increase.


    This page titled 9: Enthalpy is shared under a CC BY-NC 4.0 license and was authored, remixed, and/or curated by Jeremy Tatum.