a. Determine the number of unpaired electrons, mag- netic moment, and ligand field stabilization energy for each of the following complexes: [Co(CO)4]¯ [Cr(CN)61*¯ [Fe(H,O)g]³+ [Co(NO2)6]* [Co(NH3)G]³+ MnO4 [Cu(H,O),]²+ 12+ b. Why are two of these complexes tetrahedral and the rest octahedral? c. Why is tetrahedral geometry more stable for Co(II) than for Ni(II)?

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter20: Chemistry Of Selected Transition Elements And Coordination Compounds
Section: Chapter Questions
Problem 72QRT
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a. Determine the number of unpaired electrons, mag-
netic moment, and ligand field stabilization energy
for each of the following complexes:
[Co(CO)4] [Cr(CN),]*- [Fe(H,O)6J³+ [Co(NO2)«J*
[Co(NH3)6]³+ MnO,¯ [Cu(H,O),]²+
b. Why are two of these complexes tetrahedral and the
rest octahedral?
c. Why is tetrahedral geometry more stable for Co(II)
than for Ni(II)?
Transcribed Image Text:a. Determine the number of unpaired electrons, mag- netic moment, and ligand field stabilization energy for each of the following complexes: [Co(CO)4] [Cr(CN),]*- [Fe(H,O)6J³+ [Co(NO2)«J* [Co(NH3)6]³+ MnO,¯ [Cu(H,O),]²+ b. Why are two of these complexes tetrahedral and the rest octahedral? c. Why is tetrahedral geometry more stable for Co(II) than for Ni(II)?
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