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Class Notes for CHM 2046C at University of Central Florida (UCF)

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UCFCHM 2046CDonovan DixonSpring

CHM 2046C Lecture Notes - Lecture 2: Ionic Compound, London Dispersion Force, Sodium Chloride

Rebecca Goodridge1 Page
16 Jan 2018
0
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UCFCHM 2046CDonovan DixonSpring

CHM 2046C Lecture Notes - Lecture 3: Dynamic Equilibrium, Boiling Point

Rebecca Goodridge1 Page
16 Jan 2018
0
1/12/18: liquid its opposite condensation, the two key properties we need to describe are evaporation (vaporization) and, evaporation: liquid to vapor
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 10: Nuclear Transmutation, Beta Decay, Alpha Particle

OC9045445 Page
20 Apr 2016
20
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 7: Electromotive Force, Electroplating, Oxidation State

OC9045444 Page
20 Apr 2016
7
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 1: Molar Mass, Molality, Graph Paper

OC9045442 Page
24 Apr 2016
8
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 3: Rice Chart, Acid Strength, Conjugate Acid

OC9045445 Page
20 Apr 2016
14
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 4: Conjugate Acid, Acid Strength, Acid Dissociation Constant

OC9045445 Page
20 Apr 2016
13
2: [h+] or [oh-] depend on (1) k and (2) the ratio of acid and base concentrations, henderson-hasselbalch equation. [conj. base] ka: take the negative
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 8: Gibbs Free Energy, Molar Mass, Thermodynamics

OC9045445 Page
20 Apr 2016
9
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 1: Weak Base, Equilibrium Constant, Sodium Hydroxide

OC9045444 Page
20 Apr 2016
11
Lecture 1 notes: acids and bases are divided into strong or weak ones, strong acid: hno3(aq) + h2o(liq) . 2-(aq) + h2o(liq) : weak bases: base ionizati
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 9: Faraday Constant, Thermodynamics, Sodium Chloride

OC9045442 Page
20 Apr 2016
17
Lecture 9 notes: eo cell and thermodynamics, eo cell is directly related to go, the free energy change for the reaction. V = j/c: go = -nfeo cell. Wher
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 5: Equivalence Point, Limiting Reagent, Titration

OC9045443 Page
20 Apr 2016
10
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UCFCHM 2046CDonovan DixonFall

CHM 2046C Lecture Notes - Lecture 6: Spontaneous Process, Joule, Thermodynamics

OC9045445 Page
20 Apr 2016
21
Lecture 6 notes: first law of thermodynamics: energy cannot be created or destroyed, -it can be transferred from one place to another, -or, the total e
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