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Physics 7A for scientists and engineers
Chapters 2-15 book notes of Giancoli's Physics for Scientists and Engineers
[Show more]Chapters 2-15 book notes of Giancoli's Physics for Scientists and Engineers
[Show more]Chapter notes of kinematics including: reference frames, displacement, velocity, acceleration
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Add to cartChapter notes of kinematics including: reference frames, displacement, velocity, acceleration
Chapter 3 including vectors, scalars, projectile motion, and practice problems
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Add to cartChapter 3 including vectors, scalars, projectile motion, and practice problems
Chapter 4 including forces, newtons three laws of motion, gravity, and normal force
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Add to cartChapter 4 including forces, newtons three laws of motion, gravity, and normal force
Chapter 5 notes including friction, uniform and nonuniform circular motion, dynamics of uniform circular motion, and drag as a force
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Add to cartChapter 5 notes including friction, uniform and nonuniform circular motion, dynamics of uniform circular motion, and drag as a force
Ch 6 notes including universal gravitation, vectors, gravity, satellites, Keplers Laws, gravitational field, and principe of equivalence
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Add to cartCh 6 notes including universal gravitation, vectors, gravity, satellites, Keplers Laws, gravitational field, and principe of equivalence
chapter 7 notes including: work done by consistent and varying forces, scalar product, and kinetic energy/work-energy principle
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Add to cartchapter 7 notes including: work done by consistent and varying forces, scalar product, and kinetic energy/work-energy principle
Ch 8 notes including: conservative and nonconservative forces, potential energy, mechanical energy, elastic potential energy, gravitational energy and escape velocity, power, stable/unstable equilibrium
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Add to cartCh 8 notes including: conservative and nonconservative forces, potential energy, mechanical energy, elastic potential energy, gravitational energy and escape velocity, power, stable/unstable equilibrium
ch 9 notes including: conservation of momentum, collisions, elastic collision in 1 to 3 dimensions, and center of mass
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Add to cartch 9 notes including: conservation of momentum, collisions, elastic collision in 1 to 3 dimensions, and center of mass
ch 10 notes including: angular quantities, angular acceleration, torque, rotational inertia/kinetic energy
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Add to cartch 10 notes including: angular quantities, angular acceleration, torque, rotational inertia/kinetic energy
Ch 11 notes including: angular momentum, torque as a vector, momentum of a particle, general motion, rigid objects, conservation of angular momentum, spinning top and gyroscope, and frames of reference
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Add to cartCh 11 notes including: angular momentum, torque as a vector, momentum of a particle, general motion, rigid objects, conservation of angular momentum, spinning top and gyroscope, and frames of reference
Ch 12 notes including: conditions for equilibrium, stability and balance, elasticity, stress, and strain
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Add to cartCh 12 notes including: conditions for equilibrium, stability and balance, elasticity, stress, and strain
Ch 13 notes including: density, specific gravity, pressure, Pascal's Principle, Buoyancy, fluids in motion, Bernoulli's Equation, viscosity, and surface tension
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Add to cartCh 13 notes including: density, specific gravity, pressure, Pascal's Principle, Buoyancy, fluids in motion, Bernoulli's Equation, viscosity, and surface tension
Ch 14 notes including: oscillations of springs, simple harmonic motion, energy in simple harmonic oscillations, circular motion, simple pendulum, tension pendulum, and damped harmonic motion
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Add to cartCh 14 notes including: oscillations of springs, simple harmonic motion, energy in simple harmonic oscillations, circular motion, simple pendulum, tension pendulum, and damped harmonic motion
Ch 15 notes including: characteristics of wave motion, types of waves, energy transported by waves, traveling waves, wave equation, principle of superposition, and reflection/transmission/interference
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Add to cartCh 15 notes including: characteristics of wave motion, types of waves, energy transported by waves, traveling waves, wave equation, principle of superposition, and reflection/transmission/interference
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