Class 12 Chemistry MCQs | Chapter 5: Coordination Compounds – Part 3
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Class 12 Chemistry MCQs | Chapter 5: Coordination Compounds – Part 3

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211. According to valence bond theory, what is the most appropriate description of \([Fe(CN)_6]^{4-}\)?
ⓐ. outer orbital, \(sp^3d^2\), paramagnetic
ⓑ. inner orbital, \(d^2sp^3\), diamagnetic
ⓒ. tetrahedral, \(sp^3\), paramagnetic
ⓓ. square planar, \(dsp^2\), diamagnetic
212. According to valence bond theory, what is the most appropriate description of \([FeF_6]^{4-}\)?
ⓐ. inner orbital, \(d^2sp^3\), diamagnetic
ⓑ. square planar, \(dsp^2\), diamagnetic
ⓒ. tetrahedral, \(sp^3\), paramagnetic
ⓓ. outer orbital, \(sp^3d^2\), paramagnetic
213. According to valence bond theory, tetrahedral complexes are generally:
ⓐ. \(dsp^2\) and usually diamagnetic
ⓑ. \(sp^3\) and usually paramagnetic
ⓒ. \(d^2sp^3\) and always diamagnetic
ⓓ. \(sp^3d^2\) and always diamagnetic
214. Which statement best describes \([Ni(CN)_4]^{2-}\) in valence bond theory?
ⓐ. It is a square planar \(dsp^2\) complex and is diamagnetic
ⓑ. It is a tetrahedral \(sp^3\) complex and is paramagnetic
ⓒ. It is an octahedral \(sp^3d^2\) complex and is paramagnetic
ⓓ. It is an octahedral \(d^2sp^3\) complex and is diamagnetic
215. Which comparison between \([NiCl_4]^{2-}\) and \([Ni(CN)_4]^{2-}\) is correct?
ⓐ. Both are square planar and diamagnetic
ⓑ. Both are tetrahedral and paramagnetic
ⓒ. \([NiCl_4]^{2-}\) is square planar and diamagnetic, while \([Ni(CN)_4]^{2-}\) is tetrahedral and paramagnetic
ⓓ. \([NiCl_4]^{2-}\) is tetrahedral and paramagnetic, while \([Ni(CN)_4]^{2-}\) is square planar and diamagnetic
216. Which statement about magnetic behaviour in valence bond theory is correct?
ⓐ. A complex is diamagnetic only when its metal has oxidation state zero
ⓑ. A complex is paramagnetic only when it contains counter ions outside the bracket
ⓒ. It depends on whether electrons remain unpaired
ⓓ. Magnetic behaviour depends only on coordination number and not on electron pairing
217. Which valence bond description is most appropriate for \([PtCl_4]^{2-}\)?
ⓐ. square planar, \(dsp^2\), diamagnetic
ⓑ. tetrahedral, \(sp^3\), paramagnetic
ⓒ. octahedral, \(sp^3d^2\), diamagnetic
ⓓ. octahedral, \(d^2sp^3\), paramagnetic
218. Which statement about \([NiCl_4]^{2-}\) is correct in valence bond theory?
ⓐ. It is square planar and diamagnetic
ⓑ. It is octahedral and diamagnetic
ⓒ. It is tetrahedral and paramagnetic
ⓓ. It is square planar and paramagnetic
219. Which comparison between \([Fe(CN)_6]^{4-}\) and \([FeF_6]^{4-}\) is correct in valence bond theory?
ⓐ. \([Fe(CN)_6]^{4-}\) and \([FeF_6]^{4-}\) are both inner orbital and diamagnetic
ⓑ. \([Fe(CN)_6]^{4-}\) and \([FeF_6]^{4-}\) are both outer orbital and paramagnetic
ⓒ. \([Fe(CN)_6]^{4-}\) is outer orbital, while \([FeF_6]^{4-}\) is inner orbital
ⓓ. \([Fe(CN)_6]^{4-}\) is inner orbital; \([FeF_6]^{4-}\) is outer orbital
220. How many unpaired electrons are expected in \([FeF_6]^{4-}\) according to valence bond theory?
ⓐ. \(0\)
ⓑ. \(4\)
ⓒ. \(2\)
ⓓ. \(6\)
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