The hybridization and magnetic behaviour of cobalt ion in complex is:
- A
and diamagnetic
- B
and paramagnetic
- C
and diamagnetic
- D
and paramagnetic
The hybridization and magnetic behaviour of cobalt ion in complex is:
and diamagnetic
and paramagnetic
and diamagnetic
and paramagnetic
Correct answer:C
Standard Method
Given: The complex is .
Find: The hybridization and magnetic behaviour of the cobalt ion in this complex.
Cobalt is in the oxidation state, so its electronic configuration is . Since is a strong field ligand, it causes pairing of the electrons. Therefore, the complex becomes an inner orbital octahedral complex with hybridization
All electrons are paired, so the complex is diamagnetic.
The solution marks option C as correct, but the extracted option text is inconsistent with the working. The chemically correct description is and diamagnetic.
Option Discrepancy Noted
Given: contains cobalt in the state.
Find: Which listed option best matches the actual hybridization and magnetic behaviour.
From the solution:
hybridization. 5. Hence all electrons are paired and the complex is diamagnetic.
Therefore, the worked solution supports diamagnetic behaviour with hybridization. However, none of the listed options states this exactly. Since the solution explicitly declares option C, the answer is recorded as C while noting the mismatch between the options and the explanation.
Assuming is always a weak field ligand is incorrect. In this complex, it acts as a strong enough field ligand for to pair the electrons. Check the metal ion and oxidation state before deciding high spin or low spin behaviour.
Using the neutral cobalt configuration instead of the configuration of gives the wrong electron count. First find the oxidation state, then write the correct -electron configuration.
Choosing an option only by matching the word diamagnetic without checking the hybridization is incomplete. Both the magnetic behaviour and the orbital hybridization must agree with the electron pairing argument.
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