Q.Define Electron Gain Enthalpy. Discuss the factors on which electron gain enthalpy depends.
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Start your 14-day free trial to unlock the full solution →Electron gain enthalpy is the energy change on adding an electron to a gaseous atom; it depends on atomic size, nuclear charge and electronic configuration.
Definition: Electron gain enthalpy is the enthalpy change that occurs when one mole of electrons is added to one mole of isolated gaseous atoms to form one mole of gaseous anions:
X(g) + e^- -> X^-(g), delta-egH
A more negative (exothermic) value means the atom has a greater tendency to accept an electron.
Factors affecting electron gain enthalpy:
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Atomic size: As atomic size decreases, the added electron comes closer to the nucleus and experiences a stronger nuclear attraction, so electron gain enthalpy becomes more negative. Down a group, atomic size increases, so electron gain enthalpy generally becomes less negative.
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Nuclear charge (effective nuclear charge): A higher effective nuclear charge attracts the incoming electron more strongly, making the electron gain enthalpy more negative. Across a period (left to right), nuclear charge increases and atomic size decreases, so electron gain enthalpy generally becomes more negative (with exceptions).
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