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Honors Chemistry Second Semester Exam Study Guide: Key Concepts and Applications

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Calculating Molar Mass

Empirical Formula

Molecular Formula

Mole Concept

Mass Percent

Stoichiometry

Limiting Reagent

Percent Yield

Thermochemical Equations

Wavelength and Frequency (Simplified)

Electromagnetic Spectrum (Simplified)

Bohr Model (Simplified)

Rutherford Gold Foil Experiment

The Atom (Simplified)

Electronic Structure

The Electron Configuration (Simplified)

The Electron Configuration: Condensed

Valence Electrons of Elements (Simplified)

Periodic Trend: Atomic Radius (Simplified)

Periodic Trend: Ionization Energy (Simplified)

Periodic Trend: Electron Affinity (Simplified)

Ions and the Octet Rule

Ionic Bonding

Covalent Bonds

Lewis Dot Structures: Neutral Compounds (Simplified)

Multiple Bonds

Lewis Dot Structures: Multiple Bonds

Resonance Structures (Simplified)

Valence Shell Electron Pair Repulsion Theory (Simplified)

Electron Geometry (Simplified)

Molecular Geometry (Simplified)

Bond Angles (Simplified)

Dipole Moment (Simplified)

Molecular Polarity (Simplified)

Pressure Units

Kinetic Molecular Theory

The Ideal Gas Law

Chemistry Gas Laws

Chemistry Gas Laws: Combined Gas Law

Standard Temperature and Pressure

Dalton's Law: Partial Pressure (Simplified)

Gas Stoichiometry

Intermolecular Forces (Simplified)

Intermolecular Forces and Physical Properties

Atomic, Ionic and Molecular Solids

Heating and Cooling Curves

Solutions

Solutions: Mass Percent

Molarity

Dilutions

Solution Stoichiometry

Acid-Base Introduction

Arrhenius Acid and Base

Bronsted Lowry Acid and Base

Acid and Base Strength

The pH Scale

Auto-Ionization

pH of Strong Acids & Bases

Acid-Base Reactions

Buffers