Question of 109
Q.Define the term ionisation enthalpy. Give reasons for the following:
(i) Ionisation enthalpy of Be is greater than Boron
(ii) Ionisation enthalpy of Nitrogen is greater than Oxygen
Jammu Kashmir JkboseJammu and Kashmir Board of School Education (Class 11) 2022Subjective· 3mImportance★★★★★
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Start your 14-day free trial to unlock the full solution →Ionisation enthalpy is the energy to remove the outermost electron from a gaseous atom; the Be>B and N>O exceptions both arise from the extra stability of fully-filled and half-filled subshells.
Ionisation enthalpy is defined as the minimum amount of energy required to remove the most loosely bound (outermost) electron from an isolated gaseous atom in its ground state, converting it into a gaseous cation.
- Ionisation enthalpy of Be is greater than that of B: Be: 1s2 2s2 (a completely filled 2s subshell) B: 1s2 2s2 2p1 (one electron in the 2p subshell) Although B has one more proton than Be (higher nuclear charge, which normally increases IE across a period), Be's 2s2 configuration is exceptionally stable because it is fully filled. Removing an electron from this stable, filled 2s2 subshell requires more energy than removing the single, higher-energy 2p1 electron of boron (2p electrons are also slightly shielded by the 2s2 electrons and are farther, on average, from the nucleus). So IE1(Be) > IE1(B), an exception to the general left-to-right increasing trend.
- Ionisation enthalpy of Nitrogen is greater than that of Oxygen: N: 1s2 2s2 2p3 (exactly half-filled 2p subshell -- one electron in each of the three degenerate p orbitals, with parallel spins) O: 1s2 2s2 2p4 (one 2p orbital contains a pair of electrons) …
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