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Concept explainers
(a)
Interpretation:
The orbital splitting diagram given
Concept introduction:
Spectrochemical series: The list of ligands arranged in an ascending order of
Crystal field splitting: The energy gap between the splitting of d-orbitals of the metal ion in presence of ligands is known as the crystal field splitting
In an octahedral complex, the six ligands approach the central metal atom lying at the symmetry along the Cartesian axes. The orbitals lying along axes
Splitting of five d-orbitals in an octahedral crystals field is as follows:
Figure 1
(a)
![Check Mark](/static/check-mark.png)
Explanation of Solution
Electron configuration of
Charge on
Electron configuration of
Six ligands indicate an octahedral arrangement. Using Hund’s rule, fill the lower energy
(b)
Interpretation:
The orbital splitting diagram given
Concept introduction:
Spectrochemical series: The list of ligands arranged in an ascending order of
Crystal field splitting: The energy gap between the splitting of d-orbitals of the metal ion in presence of ligands is known as the crystal field splitting
In an octahedral complex, the six ligands approach the central metal atom lying at the symmetry along the Cartesian axes. The orbitals lying along axes
Splitting of five d-orbitals in an octahedral crystals field is as follows:
Figure 1
(b)
![Check Mark](/static/check-mark.png)
Explanation of Solution
Electron configuration of
Charge on
Electron configuration of
Six ligands indicate an octahedral arrangement. Use Hund’s rule to fill the orbitals.
(c)
Interpretation:
The orbital splitting diagram given
Concept introduction:
Spectrochemical series: The list of ligands arranged in an ascending order of
Crystal field splitting: The energy gap between the splitting of d-orbitals of the metal ion in presence of ligands is known as the crystal field splitting
Splitting of five d-orbitals in a square planer crystals field is as follows:
Figure 1
(c)
![Check Mark](/static/check-mark.png)
Explanation of Solution
Electron configuration of
Charge on
Electron configuration of
The coordination number is 4 and the complex is square planar.
The complex is low-spin because
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Chapter 23 Solutions
CHEMISTRY:MOLECULAR NATURE...-ALEKS 360
- please helparrow_forwardPredict the products of the following reactions. Draw mechanism arrows for each step for a, b, and c. a.) HBr b.) HI H₂O H2SO4 d.) C12 HO H2SO4 1.) BH3 2.) H2O2, NaOHarrow_forwardK for the following reaction is 0.11 at constant temperature. If the equilibrium concentration of HCl is 0.5 M, what is the equilibrium concentration of NH3. NH4CI(s) ⇌ NH3(g) + HCI(g)arrow_forward
- please help by Draw the following structures (Lewis or line-angle drawing).arrow_forwardplease helparrow_forwardConsider the reaction: 2 A (aq) ⇌ B(aq) Given the following KC values and starting with the initial concentration of A = 4.00 M, complete ICE diagram(s)and find the equilibrium concentrations for A and B.A) KC = 4.00B) KC = 200C) KC = 8.00 x10-3arrow_forward
- 5) Consider the reaction: Cl2 (g) + F2 (g) ⟷ 2 ClF (g) KP=? The partial pressure of 203 kPa for Cl2 and a partial pressure of 405 kPa for F2. Upon reaching equilibrium, thepartial pressure of ClF is 180 kPa. Calculate the equilibrium concentrations and then find the value for KP.arrow_forwardDon't used hand raiting and don't used Ai solutionarrow_forward(9 Pts) In one of the two Rare Earth element rows of the periodic table, identify an exception tothe general ionization energy (IE) trend. For the two elements involved, answer the followingquestions. Be sure to cite sources for all physical data that you use.a. (2 pts) Identify the two elements and write their electronic configurations.b. (2 pts) Based on their configurations, propose a reason for the IE trend exception.c. (5 pts) Calculate effective nuclear charges for the last electron in each element and theAllred-Rochow electronegativity values for the two elements. Can any of these valuesexplain the IE trend exception? Explain how (not) – include a description of how IErelates to electronegativity.arrow_forward
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