13. A. B. C. D. Consider the octahedral complex CoX64, where the ligands are all monovalent anions (i.e. X). If X is a strong-field ligand, answer each of the following How many unpaired electrons are present in the complex? Ans: Is a solution of this compound paramagnetic? Circle one: Paramagnetic Not Paramagnetic Cannot be determined from the information given If X were replaced by a weak-field ligand, how many unpaired electrons would be present in the new complex? Ans: If CoX6³ absorbs light at 500 nm, would you expect the weak-field complex to absorb light at a longer wavelength, a shorter wavelength or at the same wavelength? Longer Shorter Same

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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13.
A.
B.
C.
D.
Consider the octahedral complex CoX64, where the ligands are all monovalent anions
(i.e. X). If X is a strong-field ligand, answer each of the following
How many unpaired electrons are present in the complex? Ans:
Is a solution of this compound paramagnetic? Circle one:
Paramagnetic
Not Paramagnetic
Cannot be determined
from the information given
If X were replaced by a weak-field ligand, how many unpaired electrons would be
present in the new complex?
Ans:
If CoX6³ absorbs light at 500 nm, would you expect the weak-field complex to absorb
light at a longer wavelength, a shorter wavelength or at the same wavelength?
Longer
Shorter
Same
Transcribed Image Text:13. A. B. C. D. Consider the octahedral complex CoX64, where the ligands are all monovalent anions (i.e. X). If X is a strong-field ligand, answer each of the following How many unpaired electrons are present in the complex? Ans: Is a solution of this compound paramagnetic? Circle one: Paramagnetic Not Paramagnetic Cannot be determined from the information given If X were replaced by a weak-field ligand, how many unpaired electrons would be present in the new complex? Ans: If CoX6³ absorbs light at 500 nm, would you expect the weak-field complex to absorb light at a longer wavelength, a shorter wavelength or at the same wavelength? Longer Shorter Same
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