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Chapter 5: Nonideal Gas Behavior | CHM 103 | 152
Jacob Stewart
5,56 тыс. подписчиков
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200 видео с канала:
Jacob Stewart
Chapter 5: Nonideal Gas Behavior | CHM 103 | 152
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Chapter 5: Root Mean Square Speed Calculation | CHM 103 | 151
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Chapter 5: Kinetic Energy and Speeds of Gases | CHM 103 | 150
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Chapter 5: Kinetic Molecular Theory and Gas Laws | CHM 103 | 149
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Chapter 5: Kinetic Molecular Theory | CHM 103 | 148
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Chapter 5: Mole Fraction Calculation | CHM 103 | 147
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Chapter 5: Partial Pressures | CHM 103 | 146
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Chapter 5: Gas Density | CHM 103 | 145
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Chapter 5: Gases in Chemical Reactions | CHM 103 | 144
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Chapter 5: Practice Calculation with Ideal Gas Law | CHM 103 | 143
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Chapter 5: The Ideal Gas Law | CHM 103 | 142
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Chapter 5: The Gas Laws | CHM 103 | 141
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Chapter 5: Pressure Definition and Units | CHM 103 | 140
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Chapter 5: Introduction to Gas Properties | CHM 103 | 139
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Chapter 9: Properties of Second Row Diatomics | CHM 103 | 138
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Chapter 9: Molecular Orbitals of 2nd Row Diatomics | CHM 103 | 137
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Chapter 9: Moleulcar Orbitals of H2 and He2 | CHM 103 | 136
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Chapter 9: Introduction to Molecular Orbital Theory | CHM 103 | 135
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Chapter 9: Resonance in Valence Bond Theory | CHM 103 | 134
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Chapter 9: Hybrid Orbitals with Expanded Octets | CHM 103 | 133
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Chapter 9: Triple bonds in Valence Bond Theory | CHM 103 | 132
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Chapter 9: Forming pi Bonds | CHM 103 | 131
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Chapter 9: sp3 and sp2 Hybrid Orbitals | CHM 103 | 130
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Chapter 9: Introduction to Valence Bond Theory | CHM 103 | 129
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Chapter 9: Polar Molecules Part 2 | CHM 103 | 128
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Chapter 9: Polar Molecules Part 1 | CHM 103 | 127
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Chapter 9: Practice with Molecular Geometries | CHM 103 | 126
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Chapter 9: Central Atoms with Lone Pairs Part 3 | CHM 103 | 125
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Chapter 9: Central Atoms with Lone Pairs Part 2 | CHM 103 | 124
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Chapter 9: Central Atoms with Lone Pairs Part 1 | CHM 103 | 123
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Chapter 9: Central Atoms with No Lone Pairs Part 2 | CHM 103 | 122
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Chapter 9: Central Atoms with No Lone Pairs Part 1 | CHM 103 | 121
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Chapter 9: Valence Shell Electron Pair Repulsion Theory | CHM 103 | 120
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Chapter 9: Introduction to Molecular Geometry | CHM 103 | 119
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Chapter 8: Line Drawings of Simple Organic Molecules | CHM 103 | 118
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Chapter 8: Strengths of Ionic Bonds | CHM 103 | 117
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Chapter 8: Approximate Enthaply of Reaction from Bond Energy | CHM 103 | 116
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Chapter 8: Lengths and Strengths of Covalent Bonds | CHM 103 | 115
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Chapter 8: Molecules with Expanded Octets | CHM 103 | 113
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Chapter 8: Molecules with Less than an Octet | CHM 103 | 114
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Chapter 8: Molecules with Odd Number of Electrons | CHM 103 | 112
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Chapter 8: Formal Charges of CO2 Part 2 | CHM 103 | 111
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Chapter 8: Formal Charges of CO2 | CHM 103 | 110
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Chapter 8: Formal Charges of N2O Resonance Structures | CHM 103 | 109
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Chapter 8: Calculating Formal Charges | CHM 103 | 108
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Chapter 8: Additional Resonance Examples | CHM 103 | 107
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Chapter 8: Resonance | CHM 103 | 106
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Chapter 8: Electronegativity | CHM 103 | 105
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Chapter 8: Polar Covalent Bonds | CHM 103 | 104
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Chapter 8: Lewis Structure Examples | CHM 103 | 103
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Chapter 8: Guidelines for Drawing Lewis Structures | CHM 103 | 102
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Chapter 8: Octet Rule | CHM 103 | 101
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Chapter 8: Lewis Symbols | CHM 103 | 100
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Chapter 8: Introduction to Chapter 8 | CHM 103 | 099
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Chapter 7: Ionization Energies | CHM 103 | 097
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Chapter 7: Electron Affinities | CHM 103 | 098
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Chapter 7: Trends in Atomic and Ionic Size | CHM 103 | 096
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Chapter 7: Electron Configurations of Excited States | CHM 103 | 095
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Chapter 7: Electron Configurations of Transition Metal Ions | CHM 103 | 094
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Chapter 7: Electron Configurations of Ions | CHM 103 | 093
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Chapter 7: Exceptions in Electron Configurations | CHM 103 | 092
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Chapter 7: Hund's Rule and Filled Shells | CHM 103 | 089
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Chapter 7: Electron Configuration of Silver | CHM 103 | 091
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Chapter 7: Filling in d Orbitals | CHM 103 | 090
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Chapter 7: Putting Electrons Into Orbitals | CHM 103 | 088
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Chapter 7: Shapes of p and d Orbitals | CHM 103 | 087
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Chapter 7: Sizes of s Obritals | CHM 103 | 086
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Chapter 7: Shape of s Orbitals | CHM 103 | 085
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Chapter 7: Orbitals and Quantum Numbers | CHM 103 | 084
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Chapter 7: Bohr Model of Hydrogen | CHM 103 | 082
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Chapter 7: Matter Waves | CHM 103 | 083
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Chapter 7: Hydrogen Emission Spectrum | CHM 103 | 081
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Chapter 7: Example Calculations with Light | CHM 103 | 080
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Chapter 7: Photoelectric Effect | CHM 103 | 079
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Chapter 7: Blackbody Radiation and Quantized Energy | CHM 103 | 078
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Chapter 7: Properties of Light | CHM 103 | 077
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Chapter 7: Introduction to Chapter 7 | CHM 103 | 076
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Chapter 6: Hess's Law | CHM 103 | 072
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Chapter 6: Using Enthalpies of Formation | CHM 103 | 075
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Chapter 6: Standard Enthalpies of Formation | CHM 103 | 074
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Chapter 6: Hess's Law Practice | CHM 103 | 073
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Chapter 6: Enthalpy of Reaction Example Problem | CHM 103 | 071
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Chapter 6: Enthalpy of Reaction | CHM 103 | 070
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Chapter 6: Bomb Calorimetry | CHM 103 | 069
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Chapter 6: Calculating Heat of Phase Changes | CHM 103 | 068
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Chapter 6: Calculating With Heat Capacity | CHM 103 | 067
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Chapter 6: Example Heating Curve | CHM 103 | 066
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Chapter 6: Enthalpy | CHM 103 | 065
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Chapter 6: Work and Energy Units | CHM 103 | 064
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Chapter 6: Exothermic and Endothermic Processes | CHM 103 | 063
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Chapter 6: Systems and Surroundings | CHM 103 | 062
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Chapter 6: State Functions and the First Law | CHM 103 | 061
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Chapter 6: Potential and Kinetic Energy | CHM 103 | 060
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Chapter 4: Additional Aqueous Reactions | CHM 103 | 059
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Chapter 4: Synthesis of Lead Chromate | CHM 103 | 058
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Chapter 4: Precipitation Reaction Example | CHM 103 | 057
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Chapter 4: Precipitation Reactions and Solubility | CHM 103 | 056
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Chapter 4: Titration Example Calculation | CHM 103 | 055
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Chapter 4: Acid Base Titrations | CHM 103 | 054
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Chapter 4: Reaction with a Weak Acid | CHM 103 | 053
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Chapter 4: Acid Base Reaction, Net Ionic Equation | CHM 103 | 052
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Chapter 4: Strong and Weak Acids and Bases | CHM 103 | 051
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Chapter 4: Acid and Base Definition | CHM 103 | 050
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Chapter 4: Electrolytes and Nonelectrolytes | CHM 103 | 049
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Chapter 4: Dilutions | CHM 103 | 048
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Chapter 4: Additional Concentration Units | CHM 103 | 047
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Chapter 4: Solution Preparation Calculation | CHM 103 | 046
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Chapter 4: Molarity | CHM 103 | 045
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Chapter 4: Introduction to Solutions | CHM 103 | 044
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Chapter 3: Combustion Analysis Example Calculation | CHM 103 | 043
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Chapter 3: Mass Spectrometry and Combustion Analysis | CHM 103 | 042
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Chapter 3: Empirical Formula from Percent Composition | CHM 103 | 041
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Chapter 3: Percent Composition Example | CHM 103 | 040
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Chapter 3: Percent Composition | CHM 103 | 039
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Chapter 3: Percent Yield Example Calculation | CHM 103 | 038
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Chapter 3: Theoretical Yields, Actual Yields, and Percent Yields | CHM 103 | 037
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Chapter 3: Limiting Reactants Example | CHM 103 | 036
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Chapter 3: Limiting Reactants | CHM 103 | 035
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Chapter 3: Stoichiometric Calculations Part 2 | CHM 103 | 034
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Chapter 3: Stoichiometric Calculations Part 1 | CHM 103 | 033
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Chapter 3: Balancing a Combustion Reaction | CHM 103 | 032
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Chapter 3: Balanicing Chemical Equations | CHM 103 | 031
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Chapter 3: Moles and Chemical Equations | CHM 103 | 030
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Chapter 3: Converting Between Grams, Moles, and Particles | CHM 103 | 029
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Chapter 3: Calculating Number of Atoms in a Diamond | CHM 103 | 028
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Chapter 3: Molar Masses | CHM 103 | 027
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Chapter 3: The Mole | CHM 103 | 026
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Chapter 2: Naming Acids | CHM 103 | 025
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Chapter 2: Names Involving Polyatomic Ions | CHM 103 | 024
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Chapter 2: Naming Binary Ionic Compounds | CHM 103 | 023
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Chapter 2: Naming Binary Molecular Compounds | CHM 103 | 022
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Chapter 2: Polyatomic Ions | CHM 103 | 021
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Chapter 2: Monatomic Ions | CHM 103 | 020
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Chapter 2: Molecular and Ionic Compounds | CHM 103 | 019
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Chapter 2: Periodic Table Part 2 | CHM 103 | 018
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Chapter 2: Periodic Table Part 1 | CHM 103 | 017
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Chapter 2: Average Atomic Masses | CHM 103 | 016
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Chapter 2: Isotopes | CHM 103 | 015
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Chapter 2: Atomic Structure | CHM 103 | 014
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Chapter 2: Subatomic Particles | CHM 103 | 013
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Chapter 1: Precision and Accuracy | CHM 103 | 012
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Chapter 1: Significant Figures in Calculations | CHM 103 | 011
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Chapter 1: Significant Figures | CHM 103 | 010
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Chapter 1: Unit Conversion Example | CHM 103 | 009
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Chapter 1: Unit Conversions | CHM 103 | 008
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Chapter 1: SI Units | CHM 103 | 007
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Chapter 1: States of Matter and Density | CHM 103 | 006
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Chapter 1: Classifying Properties Example | CHM 103 | 005
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Chapter 1: Properties of Matter | CHM 103 | 004
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Chapter 1: Atoms and Molecules | CHM 103 | 003
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Chapter 1: Classifying Matter | CHM 103 | 002
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Chapter 1: Introduction to Chemistry | CHM 103 | 001
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Introduction to Calorimetry
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Sensitive Infrared Spectroscopy of Isoprene
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Building a Research Program at a Primarily Undergraduate Institution (PUI)
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Chapter 18: Total Molecular Partition Function of a Diatomic | CHM 307 | 164
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Chapter 18: Average Rotational Energy and Heat Capacity | CHM 307 | 163
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Chapter 18: Deriving an Expression for the Rotational Partition Function | CHM 307 | 162
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Chapter 18: Vibrational Contribution to Molar Heat Capacity | CHM 307 | 161
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Chapter 18: Calculating Average Vibrational Energy | CHM 307 | 160
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Chapter 18: Finding an Expression for the Vibrational Partition Function | CHM 307 | 159
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Chapter 18: Electronic Partition Function | CHM 307 | 158
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Chapter 18: Translational Partition Function Part 2 | CHM 307 | 157
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Chapter 18: Translational Partition Function Part 1 | CHM 307 | 156
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Chapter 18: Molecular Partition Functions | CHM 307 | 155
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Chapter 17 Relating Molecular and System Partition Functions | CHM 307 | 154
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Chapter 17 Finding Pressure from a Partition Function | CHM 307 | 153
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Chapter 17: Example of Finding an Average Energy from a Partition Function | CHM 307 | 152
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Cahpter 17: Average Energy From a Partition Function | CHM 307 | 151
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Chapter 17: Example of Calculating the Partition Function and Probability | CHM 307 | 150
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Chapter 17: Probability and the Partition Function | CHM 307 | 149
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Chapter 17: Examining Energy of an Ensemble | CHM 307 | 148
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Chapter 17: Adding Up Energies of Particles | CHM 307 | 147
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Chapter 17: Introduction to Statistical Thermodynamics | CHM 307 | 146
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Chapter 29: Deriving a Rate Law from a Reaction Mechanism | CHM 307 | 142
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Chapter 29: Michaelis Menten Kinetics Part 1 | CHM 307 | 144
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Chapter 29: Michaelis Menten Kinetics Part 2 | CHM 307 | 145
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Chapter 29: Steady State Approximation | CHM 307 | 141
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Chapter 29: Catalysis | CHM 307 | 143
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Chapter 29: Two Step Mechanism | CHM 307 | 139
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Chapter 29: Distinguishing One and Two Step Mechanisms | CHM 307 | 140
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Chapter 29: Reaction Mechanisms and Equilibrium | CHM 307 | 138
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Chapter 28: Activation Energy | CHM 307 | 135
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Chapter 29: Rate Laws for Elementary Steps | CHM 307 | 137
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Chapter 29: Elementary Steps in Reaction Mechanisms | CHM 307 | 136
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Chapter 28: Reaction Rates and Temperature | CHM 307 | 134
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Chapter 28: Relationship of Rates to Equilibrium | CHM 307 | 133
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Chapter 28: Reversible Reactions | CHM 307 | 132
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Chapter 28: Second Order Reactions with Two Reactants | CHM 307 | 131
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Chapter 28: Second Order Reactions | CHM 307 | 130
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Chapter 28: First Order Reactions Part 2 | CHM 307 | 129
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Chapter 28: First Order Reactions Part 1 | CHM 307 | 128
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Chapter 28: Methods for Determining Rate Laws | CHM 307 | 127
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Chapter 28: Defining Rate of Reaction and Rate Laws | CHM 307 | 126
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Chapter 28: Introduction to Chemical Kinetics | CHM 307 | 125
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Chapter 26: Equilibria with Solutions | CHM 307 | 124
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Chapter 26: Equilibria with Solids and Liquids | CHM 307 | 123
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Chapter 26: Equilibria with Real Gases | CHM 307 | 122
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Chapter 26: Direction of Reaction and Q | CHM 307 | 121
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Chapter 26: How K Changes with Temperature - The van't Hoff Equation | CHM 307 | 120
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Канал: Jacob Stewart
Chapter 5: Nonideal Gas Behavior | CHM 103 | 152
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Chapter 5: Root Mean Square Speed Calculation | CHM 103 | 151
Скачать
Chapter 5: Kinetic Energy and Speeds of Gases | CHM 103 | 150
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Chapter 5: Kinetic Molecular Theory and Gas Laws | CHM 103 | 149
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Chapter 5: Kinetic Molecular Theory | CHM 103 | 148
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Chapter 5: Mole Fraction Calculation | CHM 103 | 147
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Chapter 5: Partial Pressures | CHM 103 | 146
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Chapter 5: Gas Density | CHM 103 | 145
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Chapter 5: Gases in Chemical Reactions | CHM 103 | 144
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Chapter 5: Practice Calculation with Ideal Gas Law | CHM 103 | 143
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Chapter 5: The Ideal Gas Law | CHM 103 | 142
Скачать
Chapter 5: The Gas Laws | CHM 103 | 141
Скачать
Chapter 5: Pressure Definition and Units | CHM 103 | 140
Скачать
Chapter 5: Introduction to Gas Properties | CHM 103 | 139
Скачать
Chapter 9: Properties of Second Row Diatomics | CHM 103 | 138
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Chapter 9: Molecular Orbitals of 2nd Row Diatomics | CHM 103 | 137
Скачать
Chapter 9: Moleulcar Orbitals of H2 and He2 | CHM 103 | 136
Скачать
Chapter 9: Introduction to Molecular Orbital Theory | CHM 103 | 135
Скачать
Chapter 9: Resonance in Valence Bond Theory | CHM 103 | 134
Скачать
Chapter 9: Hybrid Orbitals with Expanded Octets | CHM 103 | 133
Скачать
Chapter 9: Triple bonds in Valence Bond Theory | CHM 103 | 132
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Chapter 9: Forming pi Bonds | CHM 103 | 131
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Chapter 9: sp3 and sp2 Hybrid Orbitals | CHM 103 | 130
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Chapter 9: Introduction to Valence Bond Theory | CHM 103 | 129
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Chapter 9: Polar Molecules Part 2 | CHM 103 | 128
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Chapter 9: Polar Molecules Part 1 | CHM 103 | 127
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Chapter 9: Practice with Molecular Geometries | CHM 103 | 126
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Chapter 9: Central Atoms with Lone Pairs Part 3 | CHM 103 | 125
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Chapter 9: Central Atoms with Lone Pairs Part 2 | CHM 103 | 124
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Chapter 9: Central Atoms with Lone Pairs Part 1 | CHM 103 | 123
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Chapter 9: Central Atoms with No Lone Pairs Part 2 | CHM 103 | 122
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Chapter 9: Central Atoms with No Lone Pairs Part 1 | CHM 103 | 121
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Chapter 9: Valence Shell Electron Pair Repulsion Theory | CHM 103 | 120
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Chapter 9: Introduction to Molecular Geometry | CHM 103 | 119
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Chapter 8: Line Drawings of Simple Organic Molecules | CHM 103 | 118
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Chapter 8: Strengths of Ionic Bonds | CHM 103 | 117
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Chapter 8: Approximate Enthaply of Reaction from Bond Energy | CHM 103 | 116
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Chapter 8: Lengths and Strengths of Covalent Bonds | CHM 103 | 115
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Chapter 8: Molecules with Expanded Octets | CHM 103 | 113
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Chapter 8: Molecules with Less than an Octet | CHM 103 | 114
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Chapter 8: Molecules with Odd Number of Electrons | CHM 103 | 112
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Chapter 8: Formal Charges of CO2 Part 2 | CHM 103 | 111
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Chapter 8: Formal Charges of CO2 | CHM 103 | 110
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Chapter 8: Formal Charges of N2O Resonance Structures | CHM 103 | 109
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Chapter 8: Calculating Formal Charges | CHM 103 | 108
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Chapter 8: Additional Resonance Examples | CHM 103 | 107
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Chapter 8: Resonance | CHM 103 | 106
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Chapter 8: Electronegativity | CHM 103 | 105
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Chapter 8: Polar Covalent Bonds | CHM 103 | 104
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Chapter 8: Lewis Structure Examples | CHM 103 | 103
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Chapter 8: Guidelines for Drawing Lewis Structures | CHM 103 | 102
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Chapter 8: Octet Rule | CHM 103 | 101
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Chapter 8: Lewis Symbols | CHM 103 | 100
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Chapter 8: Introduction to Chapter 8 | CHM 103 | 099
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Chapter 7: Ionization Energies | CHM 103 | 097
Скачать
Chapter 7: Electron Affinities | CHM 103 | 098
Скачать
Chapter 7: Trends in Atomic and Ionic Size | CHM 103 | 096
Скачать
Chapter 7: Electron Configurations of Excited States | CHM 103 | 095
Скачать
Chapter 7: Electron Configurations of Transition Metal Ions | CHM 103 | 094
Скачать
Chapter 7: Electron Configurations of Ions | CHM 103 | 093
Скачать
Chapter 7: Exceptions in Electron Configurations | CHM 103 | 092
Скачать
Chapter 7: Hund's Rule and Filled Shells | CHM 103 | 089
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Chapter 7: Electron Configuration of Silver | CHM 103 | 091
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Chapter 7: Filling in d Orbitals | CHM 103 | 090
Скачать
Chapter 7: Putting Electrons Into Orbitals | CHM 103 | 088
Скачать
Chapter 7: Shapes of p and d Orbitals | CHM 103 | 087
Скачать
Chapter 7: Sizes of s Obritals | CHM 103 | 086
Скачать
Chapter 7: Shape of s Orbitals | CHM 103 | 085
Скачать
Chapter 7: Orbitals and Quantum Numbers | CHM 103 | 084
Скачать
Chapter 7: Bohr Model of Hydrogen | CHM 103 | 082
Скачать
Chapter 7: Matter Waves | CHM 103 | 083
Скачать
Chapter 7: Hydrogen Emission Spectrum | CHM 103 | 081
Скачать
Chapter 7: Example Calculations with Light | CHM 103 | 080
Скачать
Chapter 7: Photoelectric Effect | CHM 103 | 079
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Chapter 7: Blackbody Radiation and Quantized Energy | CHM 103 | 078
Скачать
Chapter 7: Properties of Light | CHM 103 | 077
Скачать
Chapter 7: Introduction to Chapter 7 | CHM 103 | 076
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Chapter 6: Hess's Law | CHM 103 | 072
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Chapter 6: Using Enthalpies of Formation | CHM 103 | 075
Скачать
Chapter 6: Standard Enthalpies of Formation | CHM 103 | 074
Скачать
Chapter 6: Hess's Law Practice | CHM 103 | 073
Скачать
Chapter 6: Enthalpy of Reaction Example Problem | CHM 103 | 071
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Chapter 6: Enthalpy of Reaction | CHM 103 | 070
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Chapter 6: Bomb Calorimetry | CHM 103 | 069
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Chapter 6: Calculating Heat of Phase Changes | CHM 103 | 068
Скачать
Chapter 6: Calculating With Heat Capacity | CHM 103 | 067
Скачать
Chapter 6: Example Heating Curve | CHM 103 | 066
Скачать
Chapter 6: Enthalpy | CHM 103 | 065
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Chapter 6: Work and Energy Units | CHM 103 | 064
Скачать
Chapter 6: Exothermic and Endothermic Processes | CHM 103 | 063
Скачать
Chapter 6: Systems and Surroundings | CHM 103 | 062
Скачать
Chapter 6: State Functions and the First Law | CHM 103 | 061
Скачать
Chapter 6: Potential and Kinetic Energy | CHM 103 | 060
Скачать
Chapter 4: Additional Aqueous Reactions | CHM 103 | 059
Скачать
Chapter 4: Synthesis of Lead Chromate | CHM 103 | 058
Скачать
Chapter 4: Precipitation Reaction Example | CHM 103 | 057
Скачать
Chapter 4: Precipitation Reactions and Solubility | CHM 103 | 056
Скачать
Chapter 4: Titration Example Calculation | CHM 103 | 055
Скачать
Chapter 4: Acid Base Titrations | CHM 103 | 054
Скачать
Chapter 4: Reaction with a Weak Acid | CHM 103 | 053
Скачать
Chapter 4: Acid Base Reaction, Net Ionic Equation | CHM 103 | 052
Скачать
Chapter 4: Strong and Weak Acids and Bases | CHM 103 | 051
Скачать
Chapter 4: Acid and Base Definition | CHM 103 | 050
Скачать
Chapter 4: Electrolytes and Nonelectrolytes | CHM 103 | 049
Скачать
Chapter 4: Dilutions | CHM 103 | 048
Скачать
Chapter 4: Additional Concentration Units | CHM 103 | 047
Скачать
Chapter 4: Solution Preparation Calculation | CHM 103 | 046
Скачать
Chapter 4: Molarity | CHM 103 | 045
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Chapter 4: Introduction to Solutions | CHM 103 | 044
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Chapter 3: Combustion Analysis Example Calculation | CHM 103 | 043
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Chapter 3: Mass Spectrometry and Combustion Analysis | CHM 103 | 042
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Chapter 3: Empirical Formula from Percent Composition | CHM 103 | 041
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Chapter 3: Percent Composition Example | CHM 103 | 040
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Chapter 3: Percent Composition | CHM 103 | 039
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Chapter 3: Percent Yield Example Calculation | CHM 103 | 038
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Chapter 3: Theoretical Yields, Actual Yields, and Percent Yields | CHM 103 | 037
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Chapter 3: Limiting Reactants Example | CHM 103 | 036
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Chapter 3: Limiting Reactants | CHM 103 | 035
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Chapter 3: Stoichiometric Calculations Part 2 | CHM 103 | 034
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Chapter 3: Stoichiometric Calculations Part 1 | CHM 103 | 033
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Chapter 3: Balancing a Combustion Reaction | CHM 103 | 032
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Chapter 3: Balanicing Chemical Equations | CHM 103 | 031
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Chapter 3: Moles and Chemical Equations | CHM 103 | 030
Скачать
Chapter 3: Converting Between Grams, Moles, and Particles | CHM 103 | 029
Скачать
Chapter 3: Calculating Number of Atoms in a Diamond | CHM 103 | 028
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Chapter 3: Molar Masses | CHM 103 | 027
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Chapter 3: The Mole | CHM 103 | 026
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Chapter 2: Naming Acids | CHM 103 | 025
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Chapter 2: Names Involving Polyatomic Ions | CHM 103 | 024
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Chapter 2: Naming Binary Ionic Compounds | CHM 103 | 023
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Chapter 2: Naming Binary Molecular Compounds | CHM 103 | 022
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Chapter 2: Polyatomic Ions | CHM 103 | 021
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Chapter 2: Monatomic Ions | CHM 103 | 020
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Chapter 2: Molecular and Ionic Compounds | CHM 103 | 019
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Chapter 2: Periodic Table Part 2 | CHM 103 | 018
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Chapter 2: Periodic Table Part 1 | CHM 103 | 017
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Chapter 2: Average Atomic Masses | CHM 103 | 016
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Chapter 2: Isotopes | CHM 103 | 015
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Chapter 2: Atomic Structure | CHM 103 | 014
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Chapter 2: Subatomic Particles | CHM 103 | 013
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Chapter 1: Precision and Accuracy | CHM 103 | 012
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Chapter 1: Significant Figures in Calculations | CHM 103 | 011
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Chapter 1: Significant Figures | CHM 103 | 010
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Chapter 1: Unit Conversion Example | CHM 103 | 009
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Chapter 1: Unit Conversions | CHM 103 | 008
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Chapter 1: SI Units | CHM 103 | 007
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Chapter 1: States of Matter and Density | CHM 103 | 006
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Chapter 1: Classifying Properties Example | CHM 103 | 005
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Chapter 1: Properties of Matter | CHM 103 | 004
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Chapter 1: Atoms and Molecules | CHM 103 | 003
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Chapter 1: Classifying Matter | CHM 103 | 002
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Chapter 1: Introduction to Chemistry | CHM 103 | 001
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Introduction to Calorimetry
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Sensitive Infrared Spectroscopy of Isoprene
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Building a Research Program at a Primarily Undergraduate Institution (PUI)
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Chapter 18: Total Molecular Partition Function of a Diatomic | CHM 307 | 164
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Chapter 18: Average Rotational Energy and Heat Capacity | CHM 307 | 163
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Chapter 18: Deriving an Expression for the Rotational Partition Function | CHM 307 | 162
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Chapter 18: Vibrational Contribution to Molar Heat Capacity | CHM 307 | 161
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Chapter 18: Calculating Average Vibrational Energy | CHM 307 | 160
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Chapter 18: Finding an Expression for the Vibrational Partition Function | CHM 307 | 159
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Chapter 18: Electronic Partition Function | CHM 307 | 158
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Chapter 18: Translational Partition Function Part 2 | CHM 307 | 157
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Chapter 18: Translational Partition Function Part 1 | CHM 307 | 156
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Chapter 18: Molecular Partition Functions | CHM 307 | 155
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Chapter 17 Relating Molecular and System Partition Functions | CHM 307 | 154
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Chapter 17 Finding Pressure from a Partition Function | CHM 307 | 153
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Chapter 17: Example of Finding an Average Energy from a Partition Function | CHM 307 | 152
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Cahpter 17: Average Energy From a Partition Function | CHM 307 | 151
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Chapter 17: Example of Calculating the Partition Function and Probability | CHM 307 | 150
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Chapter 17: Probability and the Partition Function | CHM 307 | 149
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Chapter 17: Examining Energy of an Ensemble | CHM 307 | 148
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Chapter 17: Adding Up Energies of Particles | CHM 307 | 147
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Chapter 17: Introduction to Statistical Thermodynamics | CHM 307 | 146
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Chapter 29: Deriving a Rate Law from a Reaction Mechanism | CHM 307 | 142
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Chapter 29: Michaelis Menten Kinetics Part 1 | CHM 307 | 144
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Chapter 29: Michaelis Menten Kinetics Part 2 | CHM 307 | 145
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Chapter 29: Steady State Approximation | CHM 307 | 141
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Chapter 29: Catalysis | CHM 307 | 143
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Chapter 29: Two Step Mechanism | CHM 307 | 139
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Chapter 29: Distinguishing One and Two Step Mechanisms | CHM 307 | 140
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Chapter 29: Reaction Mechanisms and Equilibrium | CHM 307 | 138
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Chapter 28: Activation Energy | CHM 307 | 135
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Chapter 29: Rate Laws for Elementary Steps | CHM 307 | 137
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Chapter 29: Elementary Steps in Reaction Mechanisms | CHM 307 | 136
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Chapter 28: Reaction Rates and Temperature | CHM 307 | 134
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Chapter 28: Relationship of Rates to Equilibrium | CHM 307 | 133
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Chapter 28: Reversible Reactions | CHM 307 | 132
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Chapter 28: Second Order Reactions with Two Reactants | CHM 307 | 131
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Chapter 28: Second Order Reactions | CHM 307 | 130
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Chapter 28: First Order Reactions Part 2 | CHM 307 | 129
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Chapter 28: First Order Reactions Part 1 | CHM 307 | 128
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Chapter 28: Methods for Determining Rate Laws | CHM 307 | 127
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Chapter 28: Defining Rate of Reaction and Rate Laws | CHM 307 | 126
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Chapter 28: Introduction to Chemical Kinetics | CHM 307 | 125
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Chapter 26: Equilibria with Solutions | CHM 307 | 124
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Chapter 26: Equilibria with Solids and Liquids | CHM 307 | 123
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Chapter 26: Equilibria with Real Gases | CHM 307 | 122
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Chapter 26: Direction of Reaction and Q | CHM 307 | 121
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Chapter 26: How K Changes with Temperature - The van't Hoff Equation | CHM 307 | 120
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