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Q.(A) Write electronic configuration of:

(i) Cu (Atomic No. Cu = 29)
(ii) Fe2+ (Atomic No. Fe = 26) [2 marks]
(B) Describe magnetic orbital quantum number. [3 marks] OR (A) Calculate the frequency of yellow light of wavelength 750 nm. [2 marks]
(B) Explain Aufbau Principle. [3 marks]
Haryana BsehBoard of School Education Haryana (Senior Secondary Part-I / Class 11) 2018Subjective· 5mImportance★★★★★
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Cu = [Ar]3d10 4s1 (exception, favouring a filled d-subshell); Fe2+ = [Ar]3d6 (loses both 4s electrons first); ml specifies an orbital's orientation in space, with (2l+1) allowed values.

(A)(i) Electronic configuration of Cu (Z = 29):

The expected configuration by the normal Aufbau filling order would be [Ar] 3d9 4s2. However, copper is a well-known exception: a completely filled d-subshell (3d10) provides extra stability (symmetrical charge distribution, exchange energy), so one electron shifts from 4s into 3d:

Cu:[Ar] 3d10 4s1Cu: [Ar]\ 3d^{10}\ 4s^1

(A)(ii) Electronic configuration of Fe2+ (from Fe, Z = 26):

Neutral iron's configuration is [Ar] 3d6 4s2.

When a transition metal atom forms a cation, electrons are removed from the outermost (n) shell's s-orbital FIRST, before any electrons are removed from the (n-1) d-orbitals — this is because, once electrons occupy the d-subshell, the 4s orbital's energy is effectively raised above that of 3d in the ion.

So Fe2+ is formed by removing both 4s electrons from Fe:

Fe2+:[Ar] 3d6Fe^{2+}: [Ar]\ 3d^6

(B) Magnetic orbital quantum number (ml):

The magnetic orbital quantum number describes the orientation of an orbital in three-dimensional space, particularly how it would align relative to an external magnetic field.

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