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Question
Assertion (A): Electron gain enthalpy becomes less negative as we go down a group.
Reason (R): Size of the atom increases on going down the group and the added electron would be farther from the nucleus.
Options
Assertion and reason both are correct statements but reason is not correct explanation for assertion.
Assertion and reason both are correct statements and reason is correct explanation for assertion.
Assertion and reason both are wrong statements.
Assertion is wrong statement but reason is correct statement.
Solution
Assertion is wrong statement but reason is correct statement.
Explanation:
The electron gain enthalpy decreases down the group due to the increase in the atomic size which leads to decrease in the effective nuclear charge.
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\[\ce{O (g) + e- -> O- (g) ; ∆H^Θ = - 14 kJ mol^{-1}}\]
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(i) \[\ce{S (g)}\]
(ii) \[\ce{Na (g)}\]
(iii) \[\ce{O (g)}\]
(iv) \[\ce{Cl (g)}\]
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Match the correct ionisation enthalpies and electron gain enthalpies of the following elements.
Elements | ∆H1 | ∆H2 | ∆egH | |
(i) Most reactive non-metal | A. | 419 | 3051 | – 48 |
(ii) Most reactive metal | B. | 1681 | 3374 | – 328 |
(iii) Least reactive element e | C. | 738 | 1451 | – 40 |
(iv) Metal forming binary halide | D. | 2372 | 5251 | + 48 |
Electronic configuration of some elements is given in Column I and their electron gain enthalpies are given in Column II. Match the electronic configuration with electron gain enthalpy.
Column (I) | Column (II) |
Electronic configuration | Electron gain enthalpy/kJ mol–1 |
(i) 1s2 2s2 sp6 | (A) – 53 |
(ii) 1s2 2s2 2p6 3s1 | (B) – 328 |
(iii) 1s2 2s2 2p5 | (C) – 141 |
(iv) 1s2 2s2 2p4 | (D) + 48 |
Assertion (A): Boron has a smaller first ionisation enthalpy than beryllium.
Reason (R): The penetration of a 2s electron to the nucleus is more than the 2p electron hence 2p electron is more shielded by the inner core of electrons than the 2s electrons.
The correct order of electron gain enthalpy (−ve value) is ______.