Concept explainers
(a)
Interpretation: The d orbital diagram for a linear complex with ligands on the x axis and ligands on the y axis is to be drawn.
Concept introduction: The electrons in the d orbital of a
To determine: The d orbital diagram for a linear complex with ligands on the x axis.
(b)
Interpretation: The d orbital diagram for a linear complex with ligands on the x axis and ligands on the y axis is to be drawn.
Concept introduction: The electrons in the d orbital of a transition metal split into high and low energy orbitals when ligands are attached to it. The energy difference between these two levels depends upon the properties of both metal and the ligands. If the ligand is strong, then splitting will be high and the complex will be low spin. If the ligand is weak, then splitting will be less and the complex will be high spin.
To determine: The d orbital diagram for a linear complex with ligands on the y axis.
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Chapter 21 Solutions
Student Solutions Manual for Zumdahl/Zumdahl/DeCoste?s Chemistry, 10th Edition
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- Which of the following statement(s) is( are) true? a. The coordination number of a metal ion in an octahedral complex ion is 8. b. All tetrahedral complex ions are low-spin. c. The formula for triaquatrianuninechromiwn(III) sulfate is [Cr(H2O)3(NH3)](SO4)3. d. The electron configuration of Hf2+ is [Xe]4f126s2. e. Hemoglobin contains Fe3+.arrow_forwardConsider the pseudo-octahedral complex ion of Cr3+, where A and B represent ligands. Ligand A produces a stronger crystal field than ligand B. Draw an appropriate crystal field diagram for this complex ion (assume the A ligands are on the z-axis).arrow_forwardConsider the following complex ion, where A and B represent ligands. The complex is known to be diamagnetic. Do A and B produce very similar or very different crystal fields? Explain.arrow_forward
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