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OAT

DAT

* YU: York University; UofT: University of Toronto; McM: McMaster University; UWO: University of Western Ontario


I. Atomic and Molecular Structure
     � AnalysSub-atomic Particles
     � Atomic Theory
     � Quantum Theory
     � Electron Configuration
     � Orbital Types
     � Lewis-Dot Diagrams
     � Bond Types
     � Bond Order and Energy
     � Periodic Trends of Elements
     � VSEPR and Molecular Geometry

II. General Concepts and Stoichiometry
     � Naming Chemical Compounds
     � Writing Molecular Formulas
     � Balancing Equations by Inspection
     � Percent Composition
     � Empirical Formulae and Molecular Formulas
     � Moles and Molar Mass
     � Calculations from Balanced Equations
     � Lab Techniques
     � Data and Error Analysis

III. Acids and Bases and Chemical Equilibria
     � Concentration Calculations
     � Solution Properties
     � Acid and Base Definition
     � pH and Acid/BaseStrength
     � Bronsted-Lowry Reactions
     � Solubility Product Constant Ksp


IV. Phases and Chemical Kinetics
     � Kinetic Molecular Theory of Gases
     � Dalton's Law
     � Boyle's, Charles and Ideal Gas Laws
     � Intra-molecular Forces
     � Phase Changes
     � Boiling Point and Vapor Pressure
     � Rate Laws and Half Life
     � Activation Energy

V. Thermodynamics and Thermochemistry
     � Laws of Thermodynamics
     � Hess' Law
     � Spontaneity
     � Enthalpies and Entropies
     � Heat Transfer

VI. Electrochemistry and Nuclear Chemistry
     � Redox Reactions
     � Balancing Redox Reactions
     � Electrolysis and Non-spontaneous
Reactions
     � Electrode Potentials
     � Ecell, Free Energy Change, and Keq
     � Ecell vs. T-Nernst Equation
     � Batteries and Chemical Reactions
     � Corrosion: Unwanted Voltaic Cells
     � Decay processes and Half Life
     � Nuclear Reactions
     � Nuclear Fission and Fusion
     � Binding Energy

I. Translational Motion
     • Vectors & Scalars
     • Adding & Subtracting Vectors
     • Multiplying Vectors
     • Displacement, Velocity & Acceleration
     • Uniformly Accelerated Motion
     • Linear Motion & Its Graphs
     • Projectile Motion
     • Air Resistance

II. Force, Motion & Gravitation
     • Mass and Weight
     • The Nature of Force
     • Newton’s Law
     • The Law of Universal Gravitation
     • Inclined Planes
     • Circular Motion & Centripetal Force
     • Friction & Tension
     • Hook’s Law

III. Equilibrium, Torque & Energy
     • Equilibrium
     • Torque
     • Energy & Work
     • Conservative & Nonconservative Forces
     • Work & Friction

IV. Momentum, Machine & Radioactive Decay
     • Momentum & Impulse
     • Collisions & Reverse Collisions
     • Machine
     • The Ramp & lever
     • The Pulley
     • Radioactive Decay & Half-Life
     • Mass Defect
     • Fission & Fusion

V. Fluids & Solids
     • Fluid & Pressure
     • Density
     • Fluids at Rest & in Motion
     • Hydraulic Lift
     • Archimedes’ Principle
     • Ideal & Non-ideal Fluids
     • Solids
     • Thermal Expansion

VI. Waves &Sound
     • Wave Characteristics
     • Superposition, Phase & Interference
     • Simple Harmonic Motion
     • The Doppler Effect

VII. Electrostatics & Electromagnetism
     • Electric Charge
     • Coulomb’s Law
     • The Electric Field
     • Electric Potential
     • Magnetic Fields & Forces
     • Magnetic Force on a Moving Charge
     • Magnetic Fields Due to Currents in Wires
     • Magnetic Force on a Wire
     • Magnetic Force Between Two Wires
     • Electric Motors & Meters

VIII. Electronic Circuit
     • Current & Electricity
     • Electrical Resistance
     • Electrical Power & Energy
     • A Series & Parallel Circuit
     • Capacitors in Circuits
     • Voltage
     • Terminal Potential
     • Battery & Its Internal Resistance
     • Circuit
     • Ohm’s Law
     • Power

IX. Light & Geometrical Optics
     • Electromagnetic Waves
     • Shadows
     • Reflection & Refraction
     • Interference & Diffraction of Light
     • Image Formation in Plane Mirrors
     • Image Formation in Curved Mirrors
     • Image Formation in lenses

I. Structure of Organic Molecules
     • Atomic Orbitals and Molecular Orbitals
     • Hybridization
     • Inter-Molecular Forces
     • Aromaticity
     • Resonance

II. Laboratory and AnalyticalTechniques
     • Reaction and Separation Process
     • Purification Technique and Apparatus
     • Chemical Identification
     • Polarity and Solubility
     • Infrared Spectroscopy
     • 1H and 13C NMR
     • Mass Spectroscopy

III. Acid-Base Chemistry
     • Resonance and Inductive Effects
     • Prediction of Products
     • Equilibria

IV. Stereochemistry
     • Conformational Analysis
     • Chirality and Optical Activity
     • Planes of Symmetry
     • Enantiomers and Diastereomers
     • Meso Compounds

V. Reaction Mechanism
     • Dynamics and Kinetics
     • Transition State and Intermediate
     • SN1 and SN2 Mechanism
     • E1 and E2 Mechanism
     • Free Radical Halogenation
     • Electrophilic Substitution Mechanism

VI. Organic Compounds
     • Alkenes and Alkynes
     • Halogen Compounds
     • Alcohols and Ethers
     • Aldehydes and Ketones
     • Amines
     • Carboxylic Acids and Their Derivatives
     • Bioorganic Molecules

VII. Reactions and Retro-Synthetic Design
     • Reactions of Functional Groups
     • Retro-Synthetic Design

           Physics
     500 Study Slides for MCAT  

General Chemistry 
     500 Study Slides for
MCAT  
    

Organic Chemistry 
    500 Study Slides for MCAT

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Contents of MCAT Test in General Chemistry, Organic Chemistry and Physics

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