mplexes.(Se 23.56 (d) [Co(en)2(C2O4)]* (e) NH4[Cr(NH3)2(NCS)4] (f) [Cu(bipy)2I]I ese 3+ ons ar ndke ke i- Common Ligands in Coordination Chemistry (Section 23.3) 23.27 For each of the following molecules or polyatomic ions. draw the Lewis structure and indicate if it can act as a monodentate ligand, a bidentate ligand, or is unlikely to act as a ligand at all: (a) ethylamine, CH,CH,NH,, 3. alome (b) trimethylphosphine, P(CH3)3, (c) carbonate, CO,² 2- 3/31 (d) ethane, C,H.. 5 X bn 23.28 For each of the following polydentate ligands, determine (i) peiphtethe maximum number of coordination sites that the ligand can occupy on a single metal ion and (ii) the number and type of donor atoms in the ligand: (a) ethylenediamine (en), (b) bipyridine (bipy), (c) the oxalate anion (C20,2-), (d) the 2- ion of the porphine molecule (Figure 23.13), (e) [EDTA]4. 4 14- 23.29 Polydentate ligands can vary in the number of coordi- nation positions they occupy. In each of the following, identify the polydentate ligand present and indicate the probable number of coordination positions it occupies: (a) [Co(NH3)4(0-phen)]Cl3 (b) [Cr(C2O4)(H20)4]Br tiorbinW ES (c) [Ca(EDTA)]2- (d) [Zn(en)2](CI04)2 23.30 Indicate the likely coordination number of the metal m each of the following complexes: (a) [Rh(bipy)3](NO3)3 (b) Na3[Co(C204)2CI2] (c) [Cr(0-phen)3](CH3COO)3 moleculer (d) No

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter8: Bonding In Transition Metal Compounds And Coordination Complexes
Section: Chapter Questions
Problem 66AP
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28

mplexes.(Se
23.56
(d) [Co(en)2(C2O4)]*
(e) NH4[Cr(NH3)2(NCS)4]
(f) [Cu(bipy)2I]I
ese
3+
ons ar
ndke
ke
i-
Common Ligands in Coordination Chemistry
(Section 23.3)
23.27 For each of the following molecules or polyatomic ions.
draw the Lewis structure and indicate if it can act as a
monodentate ligand, a bidentate ligand, or is unlikely
to act as a ligand at all: (a) ethylamine, CH,CH,NH,,
3.
alome (b) trimethylphosphine, P(CH3)3, (c) carbonate, CO,²
2-
3/31
(d) ethane, C,H..
5 X bn
23.28 For each of the following polydentate ligands, determine (i)
peiphtethe maximum number of coordination sites that the ligand
can occupy on a single metal ion and (ii) the number and
type of donor atoms in the ligand: (a) ethylenediamine
(en), (b) bipyridine (bipy), (c) the oxalate anion (C20,2-),
(d) the 2- ion of the porphine molecule (Figure 23.13),
(e) [EDTA]4.
4
14-
23.29 Polydentate ligands can vary in the number of coordi-
nation positions they occupy. In each of the following,
identify the polydentate ligand present and indicate the
probable number of coordination positions it occupies:
(a) [Co(NH3)4(0-phen)]Cl3
(b) [Cr(C2O4)(H20)4]Br
tiorbinW ES
(c) [Ca(EDTA)]2-
(d) [Zn(en)2](CI04)2
23.30 Indicate the likely coordination number of the metal m
each of the following complexes:
(a) [Rh(bipy)3](NO3)3
(b) Na3[Co(C204)2CI2]
(c) [Cr(0-phen)3](CH3COO)3
moleculer
(d) No
Transcribed Image Text:mplexes.(Se 23.56 (d) [Co(en)2(C2O4)]* (e) NH4[Cr(NH3)2(NCS)4] (f) [Cu(bipy)2I]I ese 3+ ons ar ndke ke i- Common Ligands in Coordination Chemistry (Section 23.3) 23.27 For each of the following molecules or polyatomic ions. draw the Lewis structure and indicate if it can act as a monodentate ligand, a bidentate ligand, or is unlikely to act as a ligand at all: (a) ethylamine, CH,CH,NH,, 3. alome (b) trimethylphosphine, P(CH3)3, (c) carbonate, CO,² 2- 3/31 (d) ethane, C,H.. 5 X bn 23.28 For each of the following polydentate ligands, determine (i) peiphtethe maximum number of coordination sites that the ligand can occupy on a single metal ion and (ii) the number and type of donor atoms in the ligand: (a) ethylenediamine (en), (b) bipyridine (bipy), (c) the oxalate anion (C20,2-), (d) the 2- ion of the porphine molecule (Figure 23.13), (e) [EDTA]4. 4 14- 23.29 Polydentate ligands can vary in the number of coordi- nation positions they occupy. In each of the following, identify the polydentate ligand present and indicate the probable number of coordination positions it occupies: (a) [Co(NH3)4(0-phen)]Cl3 (b) [Cr(C2O4)(H20)4]Br tiorbinW ES (c) [Ca(EDTA)]2- (d) [Zn(en)2](CI04)2 23.30 Indicate the likely coordination number of the metal m each of the following complexes: (a) [Rh(bipy)3](NO3)3 (b) Na3[Co(C204)2CI2] (c) [Cr(0-phen)3](CH3COO)3 moleculer (d) No
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