Homework
Interactive Binder (IB)
Interactive Binder (IB)
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Instructions to get full credit.
1. Print/copy notes and annotate using Zumdahl
textbook.
2. Work on worksheet using
these notes. Pick 5 questions to answer and to get a
practice. Check the key to correct your mistakes
3. Show all work when possible
4. Respect due dates ( go to calendar).
Late notes do not get any credit.
1. Print/copy notes and annotate using Zumdahl
textbook.
2. Work on worksheet using
these notes. Pick 5 questions to answer and to get a
practice. Check the key to correct your mistakes
3. Show all work when possible
4. Respect due dates ( go to calendar).
Late notes do not get any credit.
First Semester
Click on the links below to open the files.

Unit 1
Atomic Structures and Properties
Atomic Structures and Properties
Topic 1.1 Moles and Molar Mass
Lecture 1 WS: Answer #s: 9, 10, 13
Lecture 1 WS: Answer #s: 9, 10, 13
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Topic 1.2 Mass Spectroscopy of Elements
Lecture 2 WS: Answer #s 1, 2, 3, 4, 7, 9 (a-e)
Lecture 2 WS: Answer #s 1, 2, 3, 4, 7, 9 (a-e)
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Topics 1.3 Elemental Composition of Pure Substances
Topic 1.4 Composition of Mixtures
Lecture 3 and 4 WS:
Topic 1.4 Composition of Mixtures
Lecture 3 and 4 WS:
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Topic 1.5 Atomic Structure and Electron Configuration
Lecture 5 WS :
Lecture 5 WS :
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Topic 1.6 Photoelectron Spectroscopy
Lecture 6 WS:
Lecture 6 WS:
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Topic 1.7 Periodic Trends
Lecture 7 WS:
Lecture 7 WS:
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Topic 1.8 Valence Electrons and Ionic Compounds
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Unit 2
Molecular and Ionic Compound
Structure and Properties
Molecular and Ionic Compound
Structure and Properties
Chemical Bond (Intramolecular Forces)
Topic 2.1 Types of Chemical Bonds
Topic 2.3 Structure of Ionic Solids
Topic 2.4 Structure of Metals and Alloys
Lecture 2.1, 2.3 and 2.4 WS:
Topic 2.3 Structure of Ionic Solids
Topic 2.4 Structure of Metals and Alloys
Lecture 2.1, 2.3 and 2.4 WS:
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Topic 2.2 Intramolecular Force and Potential Energy
Lecture 2.2 WS:
Lecture 2.2 WS:
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Topic 2.5 Lewis Diagrams
Lecture 9 WS:
Lecture 9 WS:
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Topic 2.6 Resonance and Formal Charge
Lecture 2.6 WS:
Lecture 2.6 WS:
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Topic 2.7 VSEPR and BOnd Hybridization
Lecture 2.7 WS:
Lecture 2.7 WS:
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Topic 3.1 Intermolecular Force
Lecture 3.1 WS:
Lecture 3.1 WS:
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Topic 3.2 Properties of Solids
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Topic 3.3 Solids, Liquids, and Gases
Lecture 3.3 WS
Lecture 3.3 WS
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Topic 3.4 Ideal Gas Law
Lecture 3.4 WS
Lecture 3.4 WS
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Topic 3.5 Kinetic Molecular Theory
Lecture 3.5 WS
Lecture 3.5 WS
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Topic 3.6 Deviation form Ideal Gas Law
Lecture 3.6 WS
Lecture 3.6 WS
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Topic 3.7 Solutions and Mixtures
Topic 3.8 Representation of Solutions
Lecture 3.7 and 3.8 WS
Topic 3.8 Representation of Solutions
Lecture 3.7 and 3.8 WS
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Topic 3.9 Separation of Solutions and Mixtures
Chromatography
Topic 3.10 Solubility
Lecture 3.9 and 3.10 WS
Chromatography
Topic 3.10 Solubility
Lecture 3.9 and 3.10 WS
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Topic 3.12 Photoelectric effect
Lecture 3.12 WS
Lecture 3.12 WS
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Topic 3.11 Spectroscopy and Electromagnetic Spectrum
Topic 3.13 Beer Lambert Law
Lecture 3.11 and 3.12 WS
Topic 3.13 Beer Lambert Law
Lecture 3.11 and 3.12 WS
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Unit 4
Chemical Reactions
Chemical Reactions
Types of Reactions
Topic 4.1 Introduction for Reactions
Topic 4.2 Net Ionic Equations
Topic 4.3 Representations of Reactions
Topic 4.4 Physical and Chemical Changes
Lecture 4.1 to 4.4 WS
Topic 4.2 Net Ionic Equations
Topic 4.3 Representations of Reactions
Topic 4.4 Physical and Chemical Changes
Lecture 4.1 to 4.4 WS
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Topic 4.5 Stochiometry
Lecture 4.5 WS
Lecture 4.5 WS
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Topic 4.7 Types of Chemical Reactions
Lecture 4.7 WS
Lecture 4.7 WS
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Topic 4.8 Introduction to Acids and Bases
Lecture 4.8 WS
Lecture 4.8 WS
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Topic 4.9 (part 1) Oxidation-Reduction (Redox) Reactions
Lecture 4.9 (part 1)WS
Lecture 4.9 (part 1)WS
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Topic 4.9 (part 2) Redox Reactions
Topic 4.6 Introduction to Titration
Topic 4.6 Introduction to Titration
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Unit 5
Kinetics
Kinetics
Topic 5.1 Reaction Rates
Topic 5.2 Introduction to Rate Law
Topic 5.2 Introduction to Rate Law
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Topic 5.3 Concentration Changes Over Time
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Topic 5.4 Elementary Reactions
Topic 5.7 Introdcution to Reaction Mechanism
Topic 5.8 Reaction Mechanism and Rate Law
Topic 5.9 Steady-State Approximation
Topic 5.7 Introdcution to Reaction Mechanism
Topic 5.8 Reaction Mechanism and Rate Law
Topic 5.9 Steady-State Approximation
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Topic 5.5 Collision Model
Topic 5.6 Reaction Energy Profile
and 5.10 Multistep Reaction Energy Profile
Topic 5.6 Reaction Energy Profile
and 5.10 Multistep Reaction Energy Profile
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Topic 5.11 Catalysis
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Second Semester

Unit VI
Thermodynamics
Thermodynamics
Topic 6.1 Endothermic and Exothermic Processes
Topic 6.2 Energy Diagrams
Topic 6.3 Heat Transfer and Thermal Equilibrium
Topic 6.2 Energy Diagrams
Topic 6.3 Heat Transfer and Thermal Equilibrium
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Topic 6.4 Heat Capacity and Calorimetry
Topic 6.6 Introduction to Enthalpy of Reaction
Topic 6.6 Introduction to Enthalpy of Reaction
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Topic 6.5
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Topic 6.7 Bond Enthalpies
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Topic 6.8 Enthalpy of Formation
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Topic 6.9 Hess's Law
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Unit VII
Equilibrium
Equilibrium
Watch Unit 7 AP Daily Videos on AP Classroom
Topic 7.1 Introduction to Equilibrium
Topic 7.2 Direction of Reversible Reactions
Topic 7.3 Reaction Quotient and Equilibrium Constant
Topic 7.2 Direction of Reversible Reactions
Topic 7.3 Reaction Quotient and Equilibrium Constant
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Topic 7.4 Calculating the Equilibrium Constant
Topic 7.5 Magnitude of the Equilibrium Constant
Topic 7.6 Properties of the Equilibrium Constant
Topic 7.5 Magnitude of the Equilibrium Constant
Topic 7.6 Properties of the Equilibrium Constant
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Topic 7.7 Calculating Equilibrium Concetrations
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Topic 7.8 Representations of Equilibrium
Topic 7.9 Introduction to Le Chatelier's Principle
Topic 7.10 Reaction Quotient and Le Chatelier's Principle
Topic 7.9 Introduction to Le Chatelier's Principle
Topic 7.10 Reaction Quotient and Le Chatelier's Principle
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Topic 7.11 Introduction to Solubility Equilibria
Topic 7.12 Common Ion Effect
Topic 7.12 Common Ion Effect
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Topic 7.13 pH and Solubility
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Unit VIII
Acids and Bases
Acids and Bases
Watch Unit 8 AP Daily Videos on AP Classroom
Topic 8.1 Introduction to Acids and Bases
Topic 8.2 pH and pOH of Strong Acids and Bases
Topic 8.2 pH and pOH of Strong Acids and Bases
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Topic 8.3 Weak Acid and Base Equilibria
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Topic 8.4 Acid-Base Reactions and Buffers
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Topic 8.5 Acid-Base Titrations
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Topic 8.6 Molecular Structure of Acids and Bases
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Topic 8.7 pH and pKa
Topic 8.8 Properties of Buffers
Topic 8.9 Hendersen-Hasselbach Equation
8.10 Buffer Capacity
Topic 8.8 Properties of Buffers
Topic 8.9 Hendersen-Hasselbach Equation
8.10 Buffer Capacity
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