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University Physics is a three-volume collection that meets the scope and sequence requirements for two- and three-semester calculus-based physics courses.
Volume 1 covers mechanics, sound, oscillations, and waves.
Volume 2 covers thermodynamics, electricity and magnetism, and Volume 3 covers optics and modern physics.
This textbook emphasizes connections between theory and application, making physics concepts interesting and accessible to students while maintaining the mathematical rigor inherent in the subject.
Frequent, strong examples focus on how to approach a problem, how to work with the equations, and how to check and generalize the result.
* Complete Textbook by OpenStax
* Multiple Choices Questions (MCQ)
* Essay Questions Flash Cards
* Key-Terms Flash Cards
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Unit 1.
Mechanics
1.
Units and Measurement
\t1.1.
The Scope and Scale of Physics
\t1.2.
Units and Standards
\t1.3.
Unit Conversion
\t1.4.
Dimensional Analysis
\t1.5.
Estimates and Fermi Calculations
\t1.6.
Significant Figures
\t1.7.
Solving Problems in Physics
2.
Vectors
\t2.1.
Scalars and Vectors
\t2.2.
Coordinate Systems and Components of a Vector
\t2.3.
Algebra of Vectors
\t2.4.
Products of Vectors
3.
Motion Along a Straight Line
\t3.1.
Position, Displacement, and Average Velocity
\t3.2.
Instantaneous Velocity and Speed
\t3.3.
Average and Instantaneous Acceleration
\t3.4.
Motion with Constant Acceleration
\t3.5.
Free Fall
\t3.6.
Finding Velocity and Displacement from Acceleration
4.
Motion in Two and Three Dimensions
\t4.1.
Displacement and Velocity Vectors
\t4.2.
Acceleration Vector
\t4.3.
Projectile Motion
\t4.4.
Uniform Circular Motion
\t4.5.
Relative Motion in One and Two Dimensions
5.
Newton's Laws of Motion
\t5.1.
Forces
\t5.2.
Newton's First Law
\t5.3.
Newton's Second Law
\t5.4.
Mass and Weight
\t5.5.
Newtons Third Law
\t5.6.
Common Forces
\t5.7.
Drawing Free-Body Diagrams
6.
Applications of Newton's Laws
\t6.1.
Solving Problems with Newtons Laws
\t6.2.
Friction
\t6.3.
Centripetal Force
\t6.4.
Drag Force and Terminal Speed
7.
Work and Kinetic Energy
\t7.1.
Work
\t7.2.
Kinetic Energy
\t7.3.
Work-Energy Theorem
\t7.4.
Power
8.
Potential Energy and Conservation of Energy
\t8.1.
Potential Energy of a System
\t8.2.
Conservative and Non-Conservative Forces
\t8.3.
Conservation of Energy
\t8.4.
Potential Energy Diagrams and Stability
\t8.5.
Sources of Energy
9.
Linear Momentum and Collisions
\t9.1.
Linear Momentum
\t9.2.
Impulse and Collisions
\t9.3.
Conservation of Linear Momentum
\t9.4.
Types of Collisions
\t9.5.
Collisions in Multiple Dimensions
\t9.6.
Center of Mass
\t9.7.
Rocket Propulsion
10.
Fixed-Axis Rotation
\t10.1.
Rotational Variables
\t10.2.
Rotation with Constant Angular Acceleration
\t10.3.
Relating Angular and Translational Quantities
\t10.4.
Moment of Inertia and Rotational Kinetic Energy
\t10.5.
Calculating Moments of Inertia
\t10.6.
Torque
\t10.7.
Newtons Second Law for Rotation
\t10.8.
Work and Power for Rotational Motion
11.
Angular Momentum
\t11.1.
Rolling Motion
\t11.2.
Angular Momentum
\t11.3.
Conservation of Angular Momentum
\t11.4.
Precession of a Gyroscope
12.
Static Equilibrium and Elasticity
\t12.1.
Conditions for Static Equilibrium
\t12.2.
Examples of Static Equilibrium
\t12.3.
Stress, Strain, and Elastic Modulus
\t12.4.
Elasticity and Plasticity
13.
Gravitation
\t13.1.
Newton's Law of Universal Gravitation
\t13.2.
Gravitation Near Earth's Surface
\t13.3.
Gravitational Potential Energy and Total Energy
\t13.4.
Satellite Orbits and Energy
\t13.5.
Kepler's Laws of Planetary Motion
\t13.6.
Tidal Forces
\t13.7.
Einstein's Theory of Gravity
14.
Fluid Mechanics
\t14.1.
Fluids, Density, and Pressure
\t14.2.
Measuring Pressure
\t14.3.
Pascal's Principle and Hydraulics
\t14.4.
Archimedes Principle and Buoyancy
\t14.5.
Fluid Dynamics
\t14.6.
Bernoullis Equation
\t14.7.
Viscosity and Turbulence
Unit 2.
Waves and Acoustics
15.
Oscillations
16.
Waves
17.
Sound

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