Chapter 21: Problem 14
Tetrahedral complexes of \(\mathrm{Co}^{2+}\) are quite common. Use a \(d\) -orbital splitting diagram to rationalize the stability of \(\mathrm{Co}^{2+}\) tetrahedral complex ions.
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Chapter 21: Problem 14
Tetrahedral complexes of \(\mathrm{Co}^{2+}\) are quite common. Use a \(d\) -orbital splitting diagram to rationalize the stability of \(\mathrm{Co}^{2+}\) tetrahedral complex ions.
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Which of the following molecules exhibit(s) optical isomerism? a. \(c i s-P t\left(\mathrm{NH}_{3}\right)_{2} \mathrm{Cl}_{2}\) b. trans-Ni(en) \(_{2} \mathrm{Br}_{2}\) (en is ethylenediamine) c. \(c i s-\mathrm{Ni}(\mathrm{en})_{2} \mathrm{Br}_{2}(\text { en is ethylenediamine })\)
Nickel can be purified by producing the volatile compound nickel tetracarbonyl. Nickel is the only metal that reacts with carbon monoxide at room temperature. Assuming this compound is overall neutral, what is the oxidation state of Ni in the compound? Deduce the formula of the compound.
Silver is sometimes found in nature as large nuggets; more often it is found mixed with other metals and their ores. Cyanide ion is often used to extract the silver by the following reaction that occurs in basic solution: $$\mathrm{Ag}(s)+\mathrm{CN}^{-}(a q)+\mathrm{O}_{2}(g) \stackrel{\mathrm{Basic}}{\longrightarrow} \mathrm{Ag}(\mathrm{CN})_{2}^{-}(a q)$$ Balance this equation by using the half-reaction method.
Compounds of \(\mathrm{Sc}^{3+}\) are not colored, but those of \(\mathrm{Ti}^{3+}\) and \(\mathrm{V}^{3+}\) are. Why?
Why are \(\mathrm{CN}^{-}\) and \(\mathrm{CO}\) toxic to humans?
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