What is Gibbs Helmholtz equation.

Thermodynamics Chemistry Physical chemistry
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The proton was discovered by Ernest Rutherford in the early 1900s
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The Gibbs–Helmholtz equation is a thermodynamic equation used for calculating changes in the Gibbs energy of a system as a function of temperature. It is named after Josiah Willard Gibbs and Hermann von Helmholtz.
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The Gibbs-Helmholtz equation is a thermodynamic equation that relates changes in the free energy of a system (ΔG) to changes in the enthalpy (ΔH) and entropy (ΔS) of the system. The equation is written as: ΔG = ΔH - TΔS where T is the absolute temperature in kelvins (K). The Gibbs-Helmholtz equation is used to describe the changes in free energy that occur during chemical reactions, phase transitions, and other processes. It helps to understand how changes in enthalpy and entropy affect the overall stability of a system. The Gibbs-Helmholtz equation states that a change in free energy is equal to the change in enthalpy minus the product of the temperature and the change in entropy. The ΔG term in the equation represents the amount of energy that is available to do work, such as the formation of bonds or the generation of heat. A negative value of ΔG indicates that the reaction is spontaneous, meaning it will proceed without the need for an external energy source. A positive value of ΔG indicates that the reaction is non-spontaneous, meaning an external energy source is required for the reaction to occur. In summary, the Gibbs-Helmholtz equation is a thermodynamic equation that relates changes in free energy, enthalpy and entropy of a system. It helps to understand the stability of a system, and how the changes in enthalpy and entropy affect the overall Gibbs Free Energy of a system.
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The Gibbs–Helmholtz equation is a thermodynamic equation used for calculating changes in the Gibbs free energy of a system as a function of temperature. It was originally presented in an 1882.
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Actually it is a thermodynamic equation use for calculating change in gibbs free Energy system as a function of temperature ....
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