Q.Explain the term enthalpy. How does it differ from internal energy?
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Start your 14-day free trial to unlock the full solution →Enthalpy H = U + pV. Internal energy change equals heat at constant volume; enthalpy change equals heat at constant pressure; they differ by the pressure-volume work term.
Internal energy (U) is the total energy contained within a system — the sum of the kinetic and potential energies of all the particles making it up. When a process occurs at constant volume (no expansion/compression work), all the heat exchanged shows up as a change in internal energy: delta U = qv.
Enthalpy (H) is defined as H = U + pV, where p is pressure and V is volume. It represents the heat content of a system under constant-pressure conditions, which is how most chemical reactions (open to the atmosphere) are actually carried out. When a process occurs at constant pressure, the heat exchanged equals the change in enthalpy: delta H = qp.
The key difference is that enthalpy explicitly accounts for the pressure-volume (expansion/compression) work a system does on, or has done on it by, the surroundings as it changes volume at constant pressure, whereas internal energy does not include this pV work term: …
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