Key Message: This book aims to explain physics in a readable and interesting manner that is accessible and clear, and to teach readers by anticipating their needs and difficulties without oversimplifying. Physics is a description of reality, and thus each topic begins with concrete observations and experiences that readers can directly relate to. We then move on to the generalizations and more formal treatment of the topic. Not only does this make the material more interesting and easier to understand, but it is closer to the way physics is actually practiced.
Equip yourself with the ultimate foundation in physics using Physics for Scientists and Engineers by Douglas C. Giancoli, the go-to calculus-based physics textbook for engineering, physics, and science majors worldwide.
This extensively revised edition balances mathematical rigor with intuitive learning, integrating real-world applications, clear narrative, and step-by-step pedagogy designed specifically for students. Giancoli’s approach starts with everyday observations, helping you connect theory with reality before diving into abstract principles. It’s physics explained the way scientists practice it—methodical, concrete, and engaging.
Perfect for university-level physics courses, this text covers mechanics, thermodynamics, electromagnetism, optics, relativity, and quantum theory, supported by hundreds of examples, diagrams, and conceptual summaries.
Calculus-based approach tailored for engineers and science majors
Rich real-world applications and engineering examples
Accessible, student-friendly explanations
Starts with intuitive concepts before moving to abstraction
Accompanied by media tools and online learning resources
Kinematics, Newton’s Laws, Circular Motion, Work & Energy
Conservation Laws, Rotational Motion, Angular Momentum
Statics, Fluids, Oscillations, and Waves
Temperature, Kinetic Theory, Heat Transfer
First and Second Laws of Thermodynamics
Electric Fields & Potentials, Circuits, Magnetism
Gauss’s Law, Faraday’s Law, Induction, AC Circuits, Maxwell’s Equations
Reflection, Refraction, Lenses, Interference, Diffraction, Polarization
Special Relativity, Quantum Theory, Atomic Models, Photons & Matter Waves
Engineering and physics undergraduates
Science majors in need of deep conceptual understanding + problem-solving skills
Instructors seeking accurate, rigorous, and readable content
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