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Browse the full collection of course materials, past exams, study guides and class notes for CHMA11H3 - Introductory Chemistry II: Reactions and Mechanisms at University of …
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Nirusha Thavarajah, Scott M. Ballantyne, Ruby May Sullan
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Verified Documents for Nirusha Thavarajah, Scott M. Ballantyne, Ruby May Sullan

Class Notes

Taken by our most diligent verified note takers in class covering the entire semester.
CHMA11H3 Lecture Notes - Lecture 1: Trigonal Planar Molecular Geometry, Trigonal Pyramidal Molecular Geometry, Molecular Geometry
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CHMA11H3 Lecture 2: CHMA11 Lecture 2
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CHMA11H3 Lecture 3: CHMA11 Lecture 3
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CHMA11H3 Lecture Notes - Lecture 4: Dynamic Equilibrium, Equilibrium Constant, Chemical Equation
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CHMA11H3 Lecture Notes - Lecture 5: Thermodynamic Equilibrium, Equilibrium Constant, Partial Pressure
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CHMA11H3 Lecture 6: CHMA11 Lecture 6
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CHMA11H3 Lecture Notes - Lecture 7: Lone Pair, Ion, Conjugate Acid
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CHMA11H3 Lecture Notes - Lecture 8: Acid Strength, Nitric Acid, Sulfuric Acid
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CHMA11H3 Lecture Notes - Lecture 9: Lone Pair, Logarithmic Scale, Weak Base
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CHMA11H3 Lecture 10: CHMA11 Lecture 10
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CHMA11H3 Lecture Notes - Lecture 11: Electron Affinity, Acid Strength, Bond Energy
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CHMA11H3 Lecture Notes - Lecture 12: Lewis Acids And Bases, Oxoacid, Electronegativity
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CHMA11H3 Lecture Notes - Lecture 13: Solubility Equilibrium, Supersaturation, Dynamic Equilibrium
We characterize solubility with a concept referred to as solubility product constant, or. Ksp: example scenario, caf2 (s) ca+2 + 2 f, ksp = [ ca+2 ] [f
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CHMA11H3 Lecture Notes - Lecture 14: Sodium Acetate, Conjugate Acid, Sodium Hydroxide
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CHMA11H3 Lecture 15: CHMA11 Lecture 15
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CHMA11H3 Lecture Notes - Lecture 16: Buffer Solution, Conjugate Acid, Acid Dissociation Constant
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CHMA11H3 Lecture 17: CHMA11 Lecture 17
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CHMA11H3 Lecture Notes - Lecture 18: Lewis Acids And Bases, Transition Metal, Ion
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CHMA11H3 Lecture Notes - Lecture 22: Spontaneous Process, Enthalpy, Thermodynamics
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CHMA11H3 Lecture Notes - Lecture 23: Standard Molar Entropy, Zero Point Railway Station, Thermodynamics
Ssurroundings: remember the 2nd law of thermodynamics, all spontaneous processes will produce increases in the entropy of the universe, therefore. Suni
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CHMA11H3 Lecture Notes - Lecture 24: Stepwise Reaction, Chemical Equation
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CHMA11H3 Lecture Notes - Lecture 25: Reaction Quotient, Catabolism
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CHMA11H3 Lecture 26: CHMA11 Lecture 23
Chma11 lecture 23: relating free energy (g) to the equilibrium constant (k) Free energy, spontaneity, and equilibrium: every chemical reaction consists
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CHMA11H3 Lecture Notes - Lecture 27: Heterogeneous Catalysis, Rate-Determining Step, Catalysis
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CHMA11H3 Lecture Notes - Lecture 28: Electrochemical Cell, Voltage, Electric Current
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CHMA11H3 Lecture Notes - Lecture 29: Standard Electrode Potential, Standard Hydrogen Electrode, Electrochemical Cell
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CHMA11H3 Lecture Notes - Lecture 30: Gibbs Free Energy, Membrane Potential, Redox
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CHMA11H3 Lecture Notes - Lecture 31: Standard Hydrogen Electrode, Ph Meter, Intensive And Extensive Properties
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CHMA11H3 Lecture 32: CHMA11 Lecture 29
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CHMA11H3 Lecture Notes - Lecture 33: Electrochemical Cell, Spontaneous Process, Ion
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CHMA11H3 Lecture Notes - Lecture 34: Electrowinning, Electrosynthesis, Electroplating
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CHMA11H3 Lecture Notes - Lecture 35: Catenation, Chemical Formula, Isomer
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CHMA11H3 Lecture Notes - Lecture 36: Trans Fat, Ester, Glycerol
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CHMA11H3 Lecture Notes - Lecture 37: Alpha And Beta Carbon, Zwitterion, Ammonia
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CHMA11H3 Lecture Notes - Lecture 38: Protein Structure, Peptide, Cell Nucleus
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CHMA11H3 Lecture Notes - Lecture 39: Monosaccharide, Cell Nucleus, Hydrolysis
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