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Physics
College Physics
College Physics
Young & Adams • 11th Edition •
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Ch 01: Models, Measurements & Vectors
Introduction to Units
Unit Conversions
Solving Density Problems
Dimensional Analysis
Counting Significant Figures
Operations with Significant Figures
Vectors, Scalars, & Displacement
Introduction to Vectors
Adding Vectors Graphically
Vector Composition & Decomposition
Adding Vectors by Components
Trig Review
Ch 02: Motion Along a Straight Line
Review of Vectors vs. Scalars
Average Velocity
Intro to Acceleration
Position-Time Graphs & Velocity
Conceptual Problems with Position-Time Graphs
Velocity-Time Graphs & Acceleration
Calculating Displacement from Velocity-Time Graphs
Conceptual Problems with Velocity-Time Graphs
Graphing Position, Velocity, and Acceleration Graphs
Kinematics Equations
Vertical Motion and Free Fall
Catch/Overtake Problems
Intro to Relative Velocity
Ch 03: Motion in a Plane
Intro to Motion in 2D: Position & Displacement
Velocity in 2D
Acceleration in 2D
Kinematics in 2D
Intro to Projectile Motion: Horizontal Launch
Negative (Downward) Launch
Symmetrical Launch
Positive (Upward) Launch
Projectiles Launched From Moving Vehicles
Special Equations in Symmetrical Launches
Uniform Circular Motion
Period and Frequency in Uniform Circular Motion
Ch 04: Newton's Laws of Motion
Newton's First & Second Laws
Types Of Forces & Free Body Diagrams
Forces & Kinematics
Vertical Forces & Acceleration
Newton's Third Law & Action-Reaction Pairs
Forces in Connected Systems of Objects
Ch 05: Applications of Newton's Laws
Vertical Equilibrium & The Normal Force
Equilibrium in 2D
Forces in 2D
Inclined Planes
Kinetic Friction
Static Friction
Stacked Blocks
Inclined Planes with Friction
Systems of Objects with Friction
Systems of Objects on Inclined Planes with Friction
Intro to Springs (Hooke's Law)
Ch 06: Circular Motion & Gravitation
Review of Uniform Circular Motion
Centripetal Forces
Vertical Centripetal Forces
Flat Curves
Banked Curves
Newton's Law of Gravity
Gravitational Forces in 2D
Acceleration Due to Gravity
Satellite Motion: Intro
Satellite Motion: Speed & Period
Kepler's Third Law
Black Hole
Ch 07: Work & Energy
Intro to Energy & Kinetic Energy
Intro to Calculating Work
Work On Inclined Planes
Work By Springs
Net Work & Work-Energy Theorem
Work As Area Under F-x Graphs
Power
Intro to Conservation of Energy
Energy with Non-Conservative Forces
Motion Along Curved Paths
Energy in Connected Objects (Systems)
Solving Projectile Motion Using Energy
Springs & Elastic Potential Energy
Escape Velocity
Ch 08: Momentum
Intro to Momentum
Intro to Impulse
Impulse with Variable Forces
Intro to Conservation of Momentum
Push-Away Problems
Types of Collisions
Completely Inelastic Collisions
Adding Mass to a Moving System
Collisions & Motion (Momentum & Energy)
Ballistic Pendulum
Collisions with Springs
Elastic Collisions
How to Identify the Type of Collision
Intro to Center of Mass
Ch 09: Rotational Motion
Rotational Position & Displacement
Rotational Velocity & Acceleration
Equations of Rotational Motion
Converting Between Linear & Rotational
Types of Acceleration in Rotation
Rolling Motion (Free Wheels)
Intro to Connected Wheels
More Connect Wheels (Bicycles)
Intro to Moment of Inertia
Moment of Inertia of Systems
Moment of Inertia & Mass Distribution
Parallel Axis Theorem
Intro to Rotational Kinetic Energy
Energy of Rolling Motion
Conservation of Energy with Rotation
More Conservation of Energy Problems
Conservation of Energy in Rolling Motion
Types of Motion & Energy
Torque with Kinematic Equations
Rotational Dynamics with Two Motions
Rotational Dynamics of Rolling Motion
Ch 10: Dynamics of Rotational Motion
Intro to Torque
Net Torque & Sign of Torque
Torque Due to Weight
Torque on Discs & Pulleys
Torque & Acceleration (Rotational Dynamics)
How to Solve: Energy vs Torque
Torque & Equilibrium
Equilibrium with Multiple Objects
Equilibrium with Multiple Supports
Review: Center of Mass
Center of Mass & Simple Balance
Equilibrium in 2D - Ladder Problems
Beam / Shelf Against a Wall
More 2D Equilibrium Problems
Intro to Angular Momentum
Conservation of Angular Momentum
Angular Momentum of a Point Mass
Angular Momentum of Objects in Linear Motion
Opening/Closing Arms on Rotating Stool
Spinning on String of Variable Length
Intro to Angular Collisions
Angular Collisions with Linear Motion
Jumping Into/Out of Moving Disc
Conservation of Angular Momentum
Angular Momentum & Newton's Second Law
Ch 11: Periodic Motion
Spring Force (Hooke's Law)
Intro to Simple Harmonic Motion (Horizontal Springs)
Energy in Simple Harmonic Motion
Simple Harmonic Motion of Vertical Springs
Simple Harmonic Motion of Pendulums
Energy in Pendulums
Ch 12: Mechanical Waves & Sound
Intro to Waves
Wave Functions & Equations of Waves
Velocity of Transverse Waves (Strings)
Wave Interference
Standing Waves
Sound Waves
Standing Sound Waves
Sound Intensity
The Doppler Effect
Beats
Ch 13: Fluid Mechanics
Density
Intro to Pressure
Pascal's Law & Hydraulic Lift
Pressure Gauge: Barometer
Pressure Gauge: Manometer
Pressure Gauge: U-shaped Tube
Buoyancy & Buoyant Force
Ideal vs Real Fluids
Fluid Flow & Continuity Equation
Ch 14: Temperature & Heat
Temperature
Linear Thermal Expansion
Volume Thermal Expansion
Specific Heat & Temperature Changes
Latent Heat & Phase Changes
Intro to Calorimetry
Calorimetry with Temperature and Phase Changes
Advanced Calorimetry: Equilibrium Temperature with Phase Changes
Heat Transfer
Ch 15: Thermal Properties of Matter
Moles and Avogadro's Number
The Ideal Gas Law
Phase Diagrams, Triple Points and Critical Points
Kinetic-Molecular Theory of Gases
Average Kinetic Energy of Gases
Internal Energy of Gases
Root-Mean-Square Velocity of Gases
First Law of Thermodynamics
PV Diagrams & Work
Work Done Through Multiple Processes
Isothermal Processes
Heat Equations for Special Processes & Molar Specific Heats
Cyclic Thermodynamic Processes
Ch 16: The Second Law of Thermodynamics
The Otto Cycle
The Carnot Cycle
Entropy and the Second Law of Thermodynamics
Ch 17: Electric Charge and Electric Field
Electric Charge
Charging Objects
Charging By Induction
Conservation of Charge
Coulomb's Law (Electric Force)
Electric Field
Dipole Moment
Electric Fields in Capacitors
Electric Field Lines
Electric Fields in Conductors
Electric Flux
Gauss' Law
Ch 18: Electric Potential and Capacitance
Electric Potential Energy
Electric Potential
Work From Electric Force
Relationships Between Force, Field, Energy, Potential
The ElectronVolt
Equipotential Surfaces
Capacitors & Capacitance
Parallel Plate Capacitors
Energy Stored by Capacitor
Combining Capacitors in Series & Parallel
Solving Capacitor Circuits
Intro To Dielectrics
How Dielectrics Work
Dielectric Breakdown
Ch 19: Current, Resistance, and Circuits
Intro to Current
Resistors and Ohm's Law
Power in Circuits
Microscopic View of Current
Combining Resistors in Series & Parallel
Kirchhoff's Junction Rule
Solving Resistor Circuits
Kirchhoff's Loop Rule
Ch 20: Magnetic Fields and Magnetic Forces
Magnets and Magnetic Fields
Summary of Magnetism Problems
Force on Moving Charges & Right Hand Rule
Circular Motion of Charges in Magnetic Fields
Mass Spectrometer
Magnetic Force on Current-Carrying Wire
Force and Torque on Current Loops
Magnetic Field Produced by Moving Charges
Magnetic Field Produced by Straight Currents
Magnetic Force Between Parallel Currents
Magnetic Force Between Two Moving Charges
Magnetic Field Produced by Loops and Solenoids
Ch 21: Electromagnetic Induction
Intro to Induction
Magnetic Flux
Faraday's Law
Lenz's Law
Motional EMF
Transformers
Mutual Inductance
Self Inductance
Inductors
LR Circuits
LC Circuits
Ch 22: Alternating Current
Alternating Voltages and Currents
RMS Current and Voltage
Power in AC Circuits
Phasors
Resistors in AC Circuits
Phasors for Resistors
Capacitors in AC Circuits
Phasors for Capacitors
Inductors in AC Circuits
Phasors for Inductors
Impedance in AC Circuits
Series LRC Circuits
Resonance in Series LRC Circuits
Ch 23: Electromagnetic Waves
Intro to Electromagnetic (EM) Waves
The Electromagnetic Spectrum
Intensity of EM Waves
Wavefunctions of EM Waves
Radiation Pressure
Polarization & Polarization Filters
Ray Nature Of Light
Law of Reflection
Snell's Law
Total Internal Reflection
Ch 24: Geometric Optics
Ray Diagrams For Mirrors
Mirror Equation
Refraction At Spherical Surfaces
Ray Diagrams For Lenses
Thin Lens And Lens Maker Equations
Ch 25: Optical Instruments
PLACEHOLDER
Ch 26: Interference and Diffraction
Diffraction
Diffraction with Huygen's Principle
Young's Double Slit Experiment
Single Slit Diffraction
Ch 27: Special Relativity
Inertial Reference Frames
Special Vs. Galilean Relativity
Consequences of Relativity
Lorentz Transformations
Ch 28: Photons, Electrons, and Atoms
Particle-Wave Duality
Ch 29: Atoms, Molecules, and Solids
Atomic Structure
Ch 30: Nuclear and High Energy Physics
Nuclear Physics
Particle Physics
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