6. How many d electrons do each of the following transition metals in the coordination complexes have? A. Hexaaquanickel(II) sulfate, [Ni(H₂O)6]SO4 B. Dicyanobis(ethylenediamine)chromium(III) chloride, [Cr(CN)2(en)2]CI C. Potassium amminetrichloroplatinate(II), K[PtNH3C13]

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### Coordination Complexes and Transition Metals

#### Question 6: d-Electrons in Coordination Complexes
How many **d** electrons do each of the following transition metals in the coordination complexes have?

A. **Hexaaquanickel(II) sulfate**, [Ni(H₂O)₆]SO₄   
B. **Dicyaonobis(ethylenediamine)chromium(III) chloride**, [Cr(CN)₂(en)₂]Cl    
C. **Potassium amminetrichloroplatinate(II)**, K[PtNH₃Cl₃]    

#### Question 7: Formulating Coordination Complexes
Write the formula of the coordination complex described:

A. One Ni²⁺ ion is bound to two water molecules and two bidentate oxalate ions (oxalate = C₂O₄²⁻).

B. A Co³⁺ ion is bound to one Cl⁻ ion, one ammonia molecule, and two bidentate ethylenediamine molecules (ethylenediamine = NH₂CH₂CH₂NH₂).

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This educational content is designed to aid understanding of the properties and formula derivation of coordination complexes involving transition metals. Each question provides an opportunity to explore the concept of d-electrons and ligand arrangements in these complexes.
Transcribed Image Text:### Coordination Complexes and Transition Metals #### Question 6: d-Electrons in Coordination Complexes How many **d** electrons do each of the following transition metals in the coordination complexes have? A. **Hexaaquanickel(II) sulfate**, [Ni(H₂O)₆]SO₄ B. **Dicyaonobis(ethylenediamine)chromium(III) chloride**, [Cr(CN)₂(en)₂]Cl C. **Potassium amminetrichloroplatinate(II)**, K[PtNH₃Cl₃] #### Question 7: Formulating Coordination Complexes Write the formula of the coordination complex described: A. One Ni²⁺ ion is bound to two water molecules and two bidentate oxalate ions (oxalate = C₂O₄²⁻). B. A Co³⁺ ion is bound to one Cl⁻ ion, one ammonia molecule, and two bidentate ethylenediamine molecules (ethylenediamine = NH₂CH₂CH₂NH₂). --- This educational content is designed to aid understanding of the properties and formula derivation of coordination complexes involving transition metals. Each question provides an opportunity to explore the concept of d-electrons and ligand arrangements in these complexes.
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