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Q.Case: The characteristics of an orbital are expressed in terms of three numbers called Principal quantum number (n), azimuthal quantum number (l), magnetic quantum number (Ml). These numbers are obtained from the solutions of the Schrodinger wave equation. Further, to represent the spin (rotation) of the electron about its own axis, a fourth quantum number, called spin quantum number has been introduced. Thus, a set of four quantum numbers which gives us complete information i.e. location, energy, the type of orbital occupied, shape and orientation of that orbital etc. about all the electrons present in an atom is called quantum numbers. Questions:

(i) How many orbitals are associated with principal quantum number (n = 4)? [1]
(ii) Using s, p, d notations, describe the orbitals with the following quantum numbers:
(a) n = 2, l = 0
(b) n = 4, l = 3 [1]
(iii) Explain Hund's rule of maximum multiplicity. [2] OR What is Aufbau rule? Why is 4s orbital filled before 3d?
Haryana BsehBoard of School Education Haryana (Senior Secondary Part-I / Class 11) 2026Subjective· 4mImportance★★★★★
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n=4n=4 has n2=16n^2=16 orbitals; (n=2,l=0)(n=2,l=0) is 2s and (n=4,l=3)(n=4,l=3) is 4f; Hund's rule says degenerate orbitals get one electron each (parallel spin) before any pairing.

(i) Orbitals for n=4n=4: The total number of orbitals associated with a principal quantum number nn is n2n^2. For n=4n=4: 42=164^2 = 16 orbitals (1 in the 4s subshell, 3 in 4p, 5 in 4d, 7 in 4f — total 1+3+5+7=161+3+5+7=16).

(ii) Orbital notation:

  • (a) n=2,l=0n=2, l=0: l=0l=0 denotes an s orbital → 2s.
  • (b) n=4,l=3n=4, l=3: l=3l=3 denotes an f orbital → 4f. …

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