CHEM 162 Experiment #5: Spectrochemical Series. (CHEM162)
University of Washington
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CHEM 162 EXPERIMENT #5: SPECTROCHEMICAL SERIES QUESTIONS & ANSWERS 2024 ( A+ GRADED 100% VERIFIED)
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CHEM 162 EXPERIMENT #5: SPECTROCHEMICAL SERIES QUESTIONS & ANSWERS 2024 ( A+ GRADED 100% VERIFIED)
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CHEM 162 EXPERIMENT 4: I. Fractional Crystallization Of KNO3 With 2Fe2.6H2O Impurity II. The Solubility Curve Of KNO3 & CHEM 162 Experiment 5 | Spectrochemical Series | Complete Solution 2023
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CHEM 162 EXPERIMENT 4: I. Fractional Crystallization Of KNO3 With 2Fe2.6H2O Impurity II. The Solubility Curve Of KNO3 & CHEM 162 Experiment 5 | Spectrochemical Series | Complete Solution 2023
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CHEM 162 Experiment Lab 4: Fractional Crystallization Part I: Fractional Crystallization of KNO3 with (NH4)2Fe(SO4)2.6H2O Impurity | 2023 Complete, CHEM 162 Experiment 5: Spectrochemical Series Complete Solution 2023, CHEM 162 EXPERIMENT 4: I. Fractional
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CHEM 162 Experiment Lab 4: Fractional Crystallization Part I: Fractional Crystallization of KNO3 with (NH4)2Fe(SO4)2.6H2O Impurity | 2023 Complete, CHEM 162 Experiment 5: Spectrochemical Series Complete Solution 2023, CHEM 162 EXPERIMENT 4: I. Fractional Crystallization Of KNO3 With 2Fe2.6H2O Impurity II. The Solubility Curve Of KNO3.
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CHEM 162 Experiment 5: Spectrochemical Series Complete Solution 2023
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CHEM 162 Experiment 5: Spectrochemical Series Complete Solution 2023. Goals of this lab: 
• Produce a copper coordination compound and evaluate the yield 
• Calculate d-orbital splitting energies from spectral data in nanometers 
• Apply Crystal Field Theory to the comparison of ligand field strengths among groups of 
coordination complexes 
• Assess the accuracy of experimental data and identify sources of error 
Part A: Preparation of cis-Bis(glycinato)copper(II) monohydrate, Cu(gly)2 ...
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CHEM 162 Experiment 5 | Spectrochemical Series | Complete Solution 2023
- Exam (elaborations) • 5 pages • 2023
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CHEM 162 Experiment 5 | Spectrochemical Series | Complete Solution 2023. Goals of this lab: 
• Produce a copper coordination compound and evaluate the yield 
• Calculate d-orbital splitting energies from spectral data in nanometers 
• Apply Crystal Field Theory to the comparison of ligand field strengths among groups of 
coordination complexes 
• Assess the accuracy of experimental data and identify sources of errorPart A: Preparation of cis-Bis(glycinato)copper(II) monohydrate, Cu(gly)2...
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CHEM 162 Experiment #5: Spectrochemical Series.
- Exam (elaborations) • 4 pages • 2022
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CHEM 162 Experiment #5: Spectrochemical Series. Part A: Preparation of cis-Bis(glycinato)copper(II) monohydrate, Cu(gly)2 
·H2O 
g CuSO4 
·5H2O g 
 g NH2CH2CO2H (glycine) g 
molar mass CuSO4 
·5H2O g/mole 
moles CuSO4 
·5H2O moles 1 pt 
molar mass NH2CH2CO2H (glycine) g/mole 
moles NH2CH2CO2H (glycine) moles 1 pt 
limiting reagent is 1 pt 
molar mass Cu(gly)2 
·H2O g/mole 1 pt 
(Note for molar mass: each glycine loses the acidic proton in order to be a bidentate ligand) 
g Cu(gly)2 
·H2O e...
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Chem162 Lab 5 Spectrochemical Series Report.
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Chem162 Lab 5 Spectrochemical Series Report. Chem 162 Experiment #5: Spectrochemical Series 
Discuss your % yield. It is high or low? What are the contributing factors to this high or low % yield? (4 pts).
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