Chem 162 experiment 3 Samenvattingen, Aantekeningen en Examens
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CHEM 162 Experiment #3: Intermolecular Forces (Complete solution)
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CHEM 162 Experiment #3: Intermolecular Forces (Complete solution)
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Chem 162 Experiment #3: Intermolecular Forces Latest Complete Solution
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Chem 162 Experiment #3: Intermolecular Forces Latest Complete Solution
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CHEM 162 EXPERIMENT #3: INTERMOLECULAR FORCES PART II (TAKE-HOME): VAPOR PRESSURE AND ENTHALPY OF VAPORIZATION UNIVERSITY OF WASHINGTON 2023 ACTUAL SOLUTION
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CHEM 162 EXPERIMENT #3: INTERMOLECULAR FORCES 
PART II (TAKE-HOME): VAPOR PRESSURE AND ENTHALPY OF VAPORIZATION UNIVERSITY OF WASHINGTON 2023 ACTUAL SOLUTION
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CHEM 162 EXPERIMENT # 3: INTERMORECULAR FORCES (PART 1-IN-LAB) UNIVERSITY OF WASHINGTON (ACTUAL CHEAT SHEET)
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CHEM 162 EXPERIMENT # 3: INTERMORECULAR FORCES (PART 1-IN-LAB) UNIVERSITY OF WASHINGTON (ACTUAL CHEAT SHEET)
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Chem 162 Experiment #3: Intermolecular Forces Part II: Vapor Pressure and Enthalpy of Vaporization - GRADED A+
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Chem 162 Experiment #3: Intermolecular Forces 
Part II: Vapor Pressure and Enthalpy of Vaporization 
PURPOSE (4 pts) 
The purpose is to measure the enthalpies of vaporazation of pentane, diethyl ether, butanone, and 2-butanol. For 
each of these molecules, a portion of the enthalpy of vaporization is due to dispersion forces (all molecules have 
dispersion forces) and the other to a polar component. In the boxes provided below, draw the structural formula for 
each molecule (should be drawn by h...
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CHEM 162 EXPERIMENT # 1 REACTIVITY TRENDS, EXPERIMENT # 2: ELECTROCHEMISTRY, EXPERIMENT # 3: INTERMORECULAR FORCES (PART 1-IN-LAB), EXPERIMENT #3: INTERMOLECULAR FORCES PART II, Experiment #4 Part I. Fractional Crystallization of KNO3 with (NH4)2Fe(SO4)2
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CHEM 162 EXPERIMENT # 1 REACTIVITY TRENDS, EXPERIMENT # 2: ELECTROCHEMISTRY, EXPERIMENT # 3: INTERMORECULAR FORCES (PART 1-IN-LAB), EXPERIMENT #3: INTERMOLECULAR FORCES PART II, Experiment #4 Part I. Fractional Crystallization of KNO3 with (NH4)2Fe(SO4)2·6H2O Impurity Part II. Determining the Solubilty Curve of KNO3, EXPERIMENT # 5 SPECTROCHEMICAL
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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
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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. Starting Components (Fract. Crystallization #0) data entry 3 
Step 3: Mixture before first crystallization 3 
mass KNO3 4.501 g 
mass (NH4 
)2Fe(SO4 
)2 
. 
6H2O 0.501 g 
Total mass of the sample mixture 5.002 g 
% Impurity (i.e., % Fe compound in the mixture)* 10.02 % 
*(This is your % impurity for Fract. Crystallization # 0) 
Fract. Crystallization...
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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 4: I. Fractional Crystallization Of KNO3 With 2Fe2.6H2O Impurity II. The Solubility Curve Of KNO3. Goals of this lab: 
• Demonstrate the purification of a solid sample using the process of fractional crystallization 
• Construct a solubility curve for potassium nitrate 
• Apply the mechanics of dimensional analysis and an understanding of solubility of solids to calculatecomposition by mass, % impurity, % recovery, solubility product constant, enthalpy of solution forma...
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Chem 162 Experiment 5 Spectrochemical Series Report.
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Chem 162 Experiment 5 Spectrochemical Series Report. 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 
·...
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BTEC APPLIED SCIENCE: UNIT 11 - Learning Aim D
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1.	How many electrons can an s subshell hold?	2 2.	How many electrons can a p subshell hold?	6 3.	How many electrons can a d subshell hold?	10 4.	Which subshells are available in the first energy level? 5.	Which subshells are available in the second en- ergy level? 6.	Which subshells are available in the third energy level? s s and p s, p and d 7.	What is Hund's rule? (Think bus seats!)	Every orbital in a sub- shell must be singly filled with an electron before any one orbital can be d...