d) Draw the octahedral fac-[FeCl3(CN)3] complex and determine its point group. Use proper wedges and dashes in order to illustrate 3 dimensional details. Use the point group to determine if the complex has a resulting net dipole moment and describe its allowed direction with respect to its symmetry elements (if applicable). ☐ 4- e) Substitute one chlorido ligand in fac-[FeCl3 (CN)3] 4 with one fluorido ligand. Determine all possible isomers and their corresponding point groups. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. 4- 4- 4- f) Substitute two chlorido ligands in fac-[FeCl3 (CN)3] 4 with two fluorido ligands. Determine all possible isomers and their corresponding point groups. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. ード 4- 4- 4- a) Draw the octahedral mer-[FeCl3(CN)3] complex and determine its point group. Use proper wedges and dashes in order to illustrate 3 dimensional details. Use the point group to determine if the complex has a resulting net dipole moment and describe its allowed direction with respect to its symmetry elements (if applicable). ード M 4- b) Substitute one chlorido ligand in mer-[FeCl3(CN)3] 4 with one fluorido ligand. Determine all possible isomers and their corresponding point groups. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. 4- 4- ☐☐☐ c) Substitute two chlorido ligands in mer-[FeCl3 (CN)3] 4 with two fluorido ligands. Determine all possible isomers and their corresponding point groups.. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. 4- 4- *** 4- 4-

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 31P
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d) Draw the octahedral fac-[FeCl3(CN)3] complex and determine its point group. Use proper wedges and
dashes in order to illustrate 3 dimensional details. Use the point group to determine if the complex has a
resulting net dipole moment and describe its allowed direction with respect to its symmetry elements (if
applicable).
☐
4-
e) Substitute one chlorido ligand in fac-[FeCl3 (CN)3] 4 with one fluorido ligand. Determine all possible
isomers and their corresponding point groups. Use the point groups to determine if the complexes have
resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if
applicable). The number of complex sketches below is not necessarily indicative of the number of isomers.
4-
4-
4-
f) Substitute two chlorido ligands in fac-[FeCl3 (CN)3] 4 with two fluorido ligands. Determine all possible
isomers and their corresponding point groups. Use the point groups to determine if the complexes have
resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if
applicable). The number of complex sketches below is not necessarily indicative of the number of isomers.
ード
4-
4-
4-
Transcribed Image Text:d) Draw the octahedral fac-[FeCl3(CN)3] complex and determine its point group. Use proper wedges and dashes in order to illustrate 3 dimensional details. Use the point group to determine if the complex has a resulting net dipole moment and describe its allowed direction with respect to its symmetry elements (if applicable). ☐ 4- e) Substitute one chlorido ligand in fac-[FeCl3 (CN)3] 4 with one fluorido ligand. Determine all possible isomers and their corresponding point groups. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. 4- 4- 4- f) Substitute two chlorido ligands in fac-[FeCl3 (CN)3] 4 with two fluorido ligands. Determine all possible isomers and their corresponding point groups. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. ード 4- 4- 4-
a) Draw the octahedral mer-[FeCl3(CN)3] complex and determine its point group. Use proper wedges and
dashes in order to illustrate 3 dimensional details. Use the point group to determine if the complex has a
resulting net dipole moment and describe its allowed direction with respect to its symmetry elements (if
applicable).
ード
M
4-
b) Substitute one chlorido ligand in mer-[FeCl3(CN)3] 4 with one fluorido ligand. Determine all possible
isomers and their corresponding point groups. Use the point groups to determine if the complexes have
resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if
applicable). The number of complex sketches below is not necessarily indicative of the number of isomers.
4-
4-
☐☐☐
c) Substitute two chlorido ligands in mer-[FeCl3 (CN)3] 4 with two fluorido ligands. Determine all possible
isomers and their corresponding point groups.. Use the point groups to determine if the complexes have
resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if
applicable). The number of complex sketches below is not necessarily indicative of the number of isomers.
4-
4-
***
4-
4-
Transcribed Image Text:a) Draw the octahedral mer-[FeCl3(CN)3] complex and determine its point group. Use proper wedges and dashes in order to illustrate 3 dimensional details. Use the point group to determine if the complex has a resulting net dipole moment and describe its allowed direction with respect to its symmetry elements (if applicable). ード M 4- b) Substitute one chlorido ligand in mer-[FeCl3(CN)3] 4 with one fluorido ligand. Determine all possible isomers and their corresponding point groups. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. 4- 4- ☐☐☐ c) Substitute two chlorido ligands in mer-[FeCl3 (CN)3] 4 with two fluorido ligands. Determine all possible isomers and their corresponding point groups.. Use the point groups to determine if the complexes have resulting net dipole moments and describe their allowed direction with respect to its symmetry elements (if applicable). The number of complex sketches below is not necessarily indicative of the number of isomers. 4- 4- *** 4- 4-
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