Consider the shown crystal-field splitting diagrams (Figure 1). Select the one that fits each of the following descriptions (The diagrams do not indicate the relative magnitudes of Δ.). Part A a weak-field octahedral complex of Fe3+ diagram (1) diagram (2) diagram (3) diagram (4) Part B a strong-field octahedral complex of Fe3+ diagram (1) diagram (2) diagram (3) diagram (4) Part C a tetrahedral complex of Fe3+ diagram (1) diagram (2) diagram (3) diagram (4) Part D a tetrahedral complex of Ni2+ diagram (1) diagram (2) diagram (3) diagram (4)
Consider the shown crystal-field splitting diagrams (Figure 1). Select the one that fits each of the following descriptions (The diagrams do not indicate the relative magnitudes of Δ.). Part A a weak-field octahedral complex of Fe3+ diagram (1) diagram (2) diagram (3) diagram (4) Part B a strong-field octahedral complex of Fe3+ diagram (1) diagram (2) diagram (3) diagram (4) Part C a tetrahedral complex of Fe3+ diagram (1) diagram (2) diagram (3) diagram (4) Part D a tetrahedral complex of Ni2+ diagram (1) diagram (2) diagram (3) diagram (4)
Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter1: Introduction To Chemistry
Section: Chapter Questions
Problem 1.6PAE
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Consider the shown crystal-field splitting diagrams (Figure 1). Select the one that fits each of the following descriptions (The diagrams do not indicate the relative magnitudes of Δ.).
Part A
a weak-field octahedral complex of Fe3+
diagram (1) |
diagram (2) |
diagram (3) |
diagram (4) |
Part B
a strong-field octahedral complex of Fe3+
diagram (1) |
diagram (2) |
diagram (3) |
diagram (4) |
Part C
a tetrahedral complex of Fe3+
diagram (1) |
diagram (2) |
diagram (3) |
diagram (4) |
Part D
a tetrahedral complex of Ni2+
diagram (1) |
diagram (2) |
diagram (3) |
diagram (4) |
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