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Q.Given below are two statements labelled as Assertion (A) and Reason (R). Select the most appropriate answer from the options given below : Assertion (A) : Copper is a non-transition element. Reason (R) : Copper has completely filled d-orbitals in its ground state. (A) Both (A) and (R) are true and (R) is the correct explanation of (A). (B) Both (A) and (R) are true, but (R) is not the correct explanation of (A). (C) (A) is true, but (R) is false. (D) (A) is false, but (R) is true.

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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The assertion is false because copper is a transition element; the reason is true because copper’s ground state has a filled d¹⁰ configuration, but that does not make it non-transitional. The correct option is (D).

Why this question trips students up

The confusion here comes from a narrow reading of the definition of a transition element. Many textbooks say a transition element is one whose atom or ion has an incomplete d-subshell. Copper’s ground state is 3d104s13d^{10}4s^1 — that d-subshell is full. So if you only check the atom, you might think copper is non-transitional. But the definition includes ions, and that changes everything.

Let’s walk through it step by step.


  1. Check the Assertion: “Copper is a non-transition element.”

    The IUPAC definition of a transition element is: an element whose atom has an incomplete d-subshell or which can give rise to cations with an incomplete d-subshell.

    Copper’s ground state is [Ar]3d104s1[Ar] 3d^{10} 4s^1. The d-subshell is full — so the atom alone does not qualify.

    But copper commonly forms CuX2+\ce{Cu^2+} ions ([Ar]3d9[Ar] 3d^9), which have an incomplete d-subshell. That makes copper a transition element.

    Therefore, the assertion is false.

  2. Check the Reason: “Copper has completely filled d-orbitals in its ground state.”

    This is factually correct. The ground-state electron configuration of copper is 3d104s13d^{10}4s^1, not 3d94s23d^9 4s^2 as you might expect from the Aufbau principle. The 3d3d orbitals are completely filled.

    So the reason is true.

  3. Does the reason explain the assertion? …

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