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AP Chemistry at AHS (Payne)
Home
Calendar
Recovery
PR Assignments Fall 2021
Class Resources Access
Class Notes
Learning Outcomes
Chapter 1: Matter, Energy, and Measurement
Chapter 2: Atoms, Molecules, and Ions
Chapter 3: Chemical Reactions andStoichiometry
Chapter 4: Reactions in Aqueous Solution
Chapter 5: Thermochemistry
Chapter 6: Electronic Structure of Atoms
Chapter 7: Periodic Properties of the Elements
Chapter 8: Basic Concepts of Chemical Bonding
Chapter 9: Molecular Geometry and Bonding Theories
Chapter 10: Gases
Chapter 11: Liquids and Intermolecular Forces
Chapter 12: Solids and Modern Materials
Chapter 13: Properties of Solutions
Chapter 14: Kinetics
Chapter 15: Chemical Equilibrium
Chapter 16: Acid-Base Equilibria
Chapter 17: Additional Aspects of Aqueous Equilibria
Chapter 19: Chemical Thermodynamics
Chapter 20: Electrochemistry
Chapter 21: Nuclear Chemistry
Chapter 24: Organic Chemistry
Blended Learning Lessons
Digital Learning Day
Forms and Docs
Labs
Potentially Useful Study Materials
Videos
AP Chemistry at AHS (Payne)
Home
Calendar
Recovery
PR Assignments Fall 2021
Class Resources Access
Class Notes
Learning Outcomes
Chapter 1: Matter, Energy, and Measurement
Chapter 2: Atoms, Molecules, and Ions
Chapter 3: Chemical Reactions andStoichiometry
Chapter 4: Reactions in Aqueous Solution
Chapter 5: Thermochemistry
Chapter 6: Electronic Structure of Atoms
Chapter 7: Periodic Properties of the Elements
Chapter 8: Basic Concepts of Chemical Bonding
Chapter 9: Molecular Geometry and Bonding Theories
Chapter 10: Gases
Chapter 11: Liquids and Intermolecular Forces
Chapter 12: Solids and Modern Materials
Chapter 13: Properties of Solutions
Chapter 14: Kinetics
Chapter 15: Chemical Equilibrium
Chapter 16: Acid-Base Equilibria
Chapter 17: Additional Aspects of Aqueous Equilibria
Chapter 19: Chemical Thermodynamics
Chapter 20: Electrochemistry
Chapter 21: Nuclear Chemistry
Chapter 24: Organic Chemistry
Blended Learning Lessons
Digital Learning Day
Forms and Docs
Labs
Potentially Useful Study Materials
Videos
More
Home
Calendar
Recovery
PR Assignments Fall 2021
Class Resources Access
Class Notes
Learning Outcomes
Chapter 1: Matter, Energy, and Measurement
Chapter 2: Atoms, Molecules, and Ions
Chapter 3: Chemical Reactions andStoichiometry
Chapter 4: Reactions in Aqueous Solution
Chapter 5: Thermochemistry
Chapter 6: Electronic Structure of Atoms
Chapter 7: Periodic Properties of the Elements
Chapter 8: Basic Concepts of Chemical Bonding
Chapter 9: Molecular Geometry and Bonding Theories
Chapter 10: Gases
Chapter 11: Liquids and Intermolecular Forces
Chapter 12: Solids and Modern Materials
Chapter 13: Properties of Solutions
Chapter 14: Kinetics
Chapter 15: Chemical Equilibrium
Chapter 16: Acid-Base Equilibria
Chapter 17: Additional Aspects of Aqueous Equilibria
Chapter 19: Chemical Thermodynamics
Chapter 20: Electrochemistry
Chapter 21: Nuclear Chemistry
Chapter 24: Organic Chemistry
Blended Learning Lessons
Digital Learning Day
Forms and Docs
Labs
Potentially Useful Study Materials
Videos
Videos
Chapter 1: Chemical Foundations
Significant Figures
Dimensional Analysis
Separation Techniques for Matter
Chapter 2: Atoms, Molecules, and Ions
Fundamental Laws
Atomic Theory
Periodic Table Basics
Nomenclature (1 of 2)
Nomenclature (2 of 2)
The Mole
Chapter 3: Stoichiometry
(None)
Chapter 4: Solution Stoichiometry and Chemical Reactions
Writing Net Ionic Equations (1 of 2)
Writing Net Ionic Equations (2 of 2)
Chapter 5: Gases
Pressure
Barometers
Gas Laws
Ideal Gas Law
Molar Mass of a Gas
Dalton’s Law of Partial Pressure
Gas Stoichiometry
Effusion, Diffusion, and Real Gases
Kinetic-Molecular Theory, Root Mean Square Velocity
Chapter 6: Thermochemistry
Energy, Work, and Heat
Calorimetry, Enthalpy, Energy
Heat Capacity
Thermochemical Stoichiometry
Hess's Law
Heat of Formation
Chapter 7: Atomic Structure and Periodicity
Planck’s Constant
Photoelectric Effect
Atomic Emission Spectra
Bohr Model (1 of 2)
Bohr Model (2 of 2)
The Wave Mechanical Model of the Atom
Paramagnetism and Diamagnetism
Quantum Numbers
Writing Quantum Numbers for Electrons
Electron Configuration and Orbital Diagrams
Chapters 8-9: Bonding
Electronegativity and Types of Bonds (1 of 2)
Electronegativity and Types of Bonds (2 of 2)
Polar or Dipole Moments
Lattice Energy (1 of 2)
Lattice Energy (2 of 2)
Bond Energy Calculations
LE Bonding model and Lewis Structures
Lewis diagrams (1 of 3)
Lewis diagrams (2 of 3)
Lewis diagrams (3 of 3)
Lewis Structures of Polyatomic Ions
Exceptions, Resonance, and Formal Charge (1 of 2)
Exceptions, Resonance, and Formal Charge (2 of 2)
Formal Charge (1 of 2)
Formal Charge (2 of 2)
VSEPR
Orbital Hybridization
Sigma and Pi Bonds
Chapter 10: Phases of Matter
Phases of Matter
Crystalline Solids
Vapor Pressure and Phase Diagrams
Chapter 11: Properties of Solutions
Defining Solutions
Calculating Concentrations
Molality, Mass Percent, Mole Fraction
Solution Stoichiometry Review
Dissociation into Ions
Colligative Properties
Chapter 12: Chemical Kinetics
Kinetics basics
Differential Rate Law 1
Differential Rate Law 2
Integrated Rate Law
Reaction Mechanisms
Model For Kinetics
Catalysis and Potential Energy
Chapters 13: Equilibrium
Equilibrium Position and Constant
Equilibrium Pressure and Heterogeneous Equilibria
ICE Table (normal)
ICE Table (with small K)
ICE Table (with quadratic equation)
Chapter 14: Acids and Bases Equilibrium
Acids and Bases Intro Part 1
Acids and Bases Intro Part 2
Weak Acid ICE Tables
Percent Dissociation
Weak Bases ICE Tables
Polyprotic Acids
Properties of Salts
Chapter 15: Applications of Aqueous Equilibria
The Common Ion Effect
Calculating the pH of Strong Acids and Strong Bases
Calculate the pH of a Weak Acid
Calculate the pH of a Weak Base
Titration Curve
The Solubility Equilibria of Salts
Chapter 16: Spontaneity, Entropy, and Free Energy
Thermodynamics 1: Enthalpy and Entropy
Thermodynamics 2: Enthalpy and Entropy
Thermodynamics 3: Enthalpy and Entropy
Thermodynamics 4: Enthalpy and Entropy
Thermodynamic Calculations 1
Thermodynamic Calculations 2
Chapter 17: Electrochemistry
Galvanic Cells (1 of 2)
Galvanic Cells (2 of 2)
Electrochemical Cell
Standard Reduction Potential
Gibbs Free Energy, Electrical Work, and Cell Potential
Nernst and Concentration Dependency
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