SOLUTIONS MANUAL

Solutions Manual for College Physics 2nd Edition By Paul Peter Urone, Roger Hinrichs

$30.00
Secure checkout
Instant digital download
PDF document

Document details

Pages
867
File size
21.92 MB
Format
Digital PDF
Course
Physics
About this ebook
The Solutions Manual for College Physics 2e by Paul Peter Urone and Roger Hinrichs (published by OpenStax) covers 34 foundational chapters across mechanics, thermodynamics, waves, electricity, magnetism, optics, and modern physics. This algebra-based, two-semester curriculum details the following structural units and topics: [1, 2, 3]
Part 1: Mechanics, Thermal Physics, and Waves
  • Chapter 1: The Nature of Science and Physics (Physical units, standards, accuracy, precision, and significant figures)
  • Chapter 2: One-Dimensional Kinematics (Displacement, velocity, speed, acceleration, and free-fall equations)
  • Chapter 3: Two-Dimensional Kinematics (Vector addition/subtraction, projectile motion, and relative velocity)
  • Chapter 4: Dynamics: Force and Newton's Laws of Motion (Inertia, system concept, friction, tension, and the four basic forces)
  • Chapter 5: Further Applications of Newton's Laws (Friction, drag, elasticity, stress, and strain)
  • Chapter 6: Uniform Circular Motion and Gravitation (Centripetal acceleration, Newton’s law of universal gravitation, and satellite motion)
  • Chapter 7: Work, Energy, and Energy Resources (Work-energy theorem, kinetic energy, potential energy, conservation of energy, and power)
  • Chapter 8: Linear Momentum and Collisions (Impulse, conservation of momentum, and elastic/inelastic collisions)
  • Chapter 9: Statics and Torque (Conditions for equilibrium, simple machines, and muscles/joints)
  • Chapter 10: Rotational Motion and Angular Momentum (Angular acceleration, rotational kinematics, moment of inertia, and torque)
  • Chapter 11: Fluid Statics (Density, pressure, Pascal's principle, Archimedes' principle, and buoyant forces)
  • Chapter 12: Fluid Dynamics and Its Biological and Medical Applications (Flow rate, Bernoulli's equation, viscosity, and turbulence)
  • Chapter 13: Temperature, Kinetic Theory, and the Gas Laws (Kelvin scale, thermal expansion, ideal gas law, and humidity)
  • Chapter 14: Heat and Heat Transfer Methods (Conduction, convection, radiation, and calorimetry)
  • Chapter 15: Thermodynamics (First and second laws of thermodynamics, heat engines, refrigerators, and entropy)
  • Chapter 16: Oscillations and Waves (Hooke's law, simple harmonic motion, wave periods, and wave interference)
  • Chapter 17: Physics of Hearing (Sound intensity, speed of sound, Doppler effect, and ultrasound) [1, 2, 3, 4, 5, 6]
Part 2: Electricity, Magnetism, Optics, and Modern Physics
  • Chapter 18: Electric Charge and Electric Field (Static electricity, Coulomb's law, and conductors/insulators)
  • Chapter 19: Electric Potential and Electric Field (Electric potential energy, capacitance, and dielectrics)
  • Chapter 20: Electric Current, Resistance, and Ohm's Law (Current, resistance, voltage, and electrical safety)
  • Chapter 21: Circuits and DC Instruments (Resistors in series/parallel, EMF, and Kirchhoff’s rules)
  • Chapter 22: Magnetism (Magnetic fields, Lorentz force, mass spectrometers, and magnetic resonance imaging)
  • Chapter 23: Electromagnetic Induction, AC Circuits, and Electrical Technologies (Faraday's law, Lenz's law, transformers, and inductors)
  • Chapter 24: Electromagnetic Waves (Maxwell’s equations, the EM spectrum, and energy production)
  • Chapter 25: Geometric Optics (Reflection, refraction, Snell's law, total internal reflection, lenses, and mirrors)
  • Chapter 26: Vision and Optical Instruments (The physics of the human eye, microscopes, and telescopes)
  • Chapter 27: Wave Optics (Interference, diffraction, Young’s double-slit experiment, polarization, and thin-film interference)
  • Chapter 28: Special Relativity (Simulatenity, time dilation, length contraction, relativistic momentum, and E=mc²)
  • Chapter 29: Introduction to Quantum Physics (Blackbody radiation, photoelectric effect, photon momentum, and wave-particle duality)
  • Chapter 30: Atomic Physics (Discovery of the electron, Bohr model of the atom, X-rays, and lasers)
  • Chapter 31: Radioactivity and Nuclear Physics (Nuclear radiation, half-life, binding energy, and radioactive dating)
  • Chapter 32: Medical Applications of Nuclear Physics (Radiation therapy, diagnostic imaging, and biological effects of radiation)
  • Chapter 33: Particle Physics (Quarks, leptons, fundamental forces, and particle accelerators)
  • Chapter 34: Frontiers of Physics (Cosmology, dark matter, dark energy, and string theory) [1, 2]

File included

PDF
tmpphpR8Og83 21.92 MB

Topics

: Mechanics Thermal Physics and Waves Atomic Physics (Discovery of the electron Bohr model of the atom X-rays and lasers) Electric Current Resistance and Ohm's Law (Current resistance voltage and electrical safety) Electric Potential and Electric Field (Electric potential energy capacitance and dielectrics) Electricity Magnetism Optics and Modern Physics Electromagnetic Induction AC Circuits and Electrical Technologies (Faraday's law Lenz's law transformers and inductors) Fluid Dynamics and Its Biological and Medical Applications Fluid Statics (Density pressure Pascal's principle Archimedes' principle and buoyant forces) Frontiers of Physics (Cosmology dark matter dark energy and string theory) Geometric Optics (Reflection refraction Snell's law total internal reflection lenses and mirrors) Introduction to Quantum Physics (Blackbody radiation photoelectric effect photon momentum and wave-particle duality) Magnetism (Magnetic fields Lorentz force mass spectrometers and magnetic resonance imaging) Medical Applications of Nuclear Physics (Radiation therapy diagnostic imaging and biological effects of radiation) One-Dimensional Kinematics Particle Physics (Quarks leptons fundamental forces and particle accelerators) Physics of Hearing (Sound intensity speed of sound Doppler effect and ultrasound) Radioactivity and Nuclear Physics (Nuclear radiation half-life binding energy and radioactive dating) Rotational Motion and Angular Momentum Special Relativity (Simulatenity time dilation length contraction relativistic momentum and E=mc²) Statics and Torque (Conditions for equilibrium simple machines and muscles/joints) Temperature Kinetic Theory and the Gas Laws The Nature of Science and Physics Thermodynamics (First and second laws of thermodynamics heat engines refrigerators and entropy) Two-Dimensional Kinematics: Uniform Circular Motion and Gravitation (Centripetal acceleration Newton’s law of universal gravitation and satellite motion) Vision and Optical Instruments (The physics of the human eye microscopes and telescopes) Wave Optics (Interference diffraction Young’s double-slit experiment polarization and thin-film interference) Work Energy and Energy Resources • Circuits and DC Instruments (Resistors in series/parallel EMF and Kirchhoff’s rules) • Dynamics: Force and Newton's Laws of Motion (Inertia system concept friction tension and the four basic forces) • Electric Charge and Electric Field (Static electricity Coulomb's law and conductors/insulators) • Further Applications of Newton's Laws (Friction drag elasticity stress and strain) • Heat and Heat Transfer Methods (Conduction convection radiation and calorimetry) • Linear Momentum and Collisions (Impulse conservation of momentum and elastic/inelastic collisions) • Oscillations and Waves (Hooke's law simple harmonic motion wave periods and wave interference)