(a) Draw the structure for each of the following complexes: (1) [Mn(Me)3(PMe3)2(H₂O)] (ii) [Fe(15-C5H5)2] (iii) trans-[Co(en)2Br2]* (iv) [Pt(n²-C2H4)Cl2] (v) [Mn(CO)5]2

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Chapter1: Chemical Foundations
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(a) Draw the structure for each of the following complexes:
(i) [Mn(Me)3(PMe3)2(H₂O)]
(ii) [Fe(15-C5H5)2]
(iii) trans-[Co(en)2Br2]*
(iv) [Pt(n²-C2H4)Cl2]
(v) [Mn(CO)5]2
(b)
(10)
Give the oxidation state of the metal and the d-electron count (use the Neutral
Ligand counting method) for each of the following complexes. Show
calculations for d-electron count.
(i) [Mn(Me)3(PMe3)2(H₂O)]
(ii) [Fe(15-C5H5)2]
(iii) trans-[Co(en)2Br2]+
(iv) [Pt(n²-C2H4)Cl2]
(v) [Mn(CO)5]2
(10)
Transcribed Image Text:(a) Draw the structure for each of the following complexes: (i) [Mn(Me)3(PMe3)2(H₂O)] (ii) [Fe(15-C5H5)2] (iii) trans-[Co(en)2Br2]* (iv) [Pt(n²-C2H4)Cl2] (v) [Mn(CO)5]2 (b) (10) Give the oxidation state of the metal and the d-electron count (use the Neutral Ligand counting method) for each of the following complexes. Show calculations for d-electron count. (i) [Mn(Me)3(PMe3)2(H₂O)] (ii) [Fe(15-C5H5)2] (iii) trans-[Co(en)2Br2]+ (iv) [Pt(n²-C2H4)Cl2] (v) [Mn(CO)5]2 (10)
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