Keywords: Newton's Laws
Displaying 1-14 of 14 results.
2-D Kinematics, Forces and Newton's Laws I Fall 2007
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Abstract: 2-D Kinematics, Forces and Newton's Laws I. From Physics 8A: Introductory Physics - Fall 2007. Introduction to forces, kinetics, equilibria, fluids, waves, and heat. This course presents concepts and methodologies for understanding physical phenomena, and is particularly useful preparation for upper ... More »
2-D Kinematics, Forces and Newton's Laws II Fall 2007
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Abstract: 2-D Kinematics, Forces and Newton's Laws II. From Physics 8A: Introductory Physics - Fall 2007. Introduction to forces, kinetics, equilibria, fluids, waves, and heat. This course presents concepts and methodologies for understanding physical phenomena, and is particularly useful preparation for upper ... More »
2-D Kinematics, Forces and Newton's Laws III Fall 2007
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Abstract: 2-D Kinematics, Forces and Newton's Laws III. From Physics 8A: Introductory Physics - Fall 2007. Introduction to forces, kinetics, equilibria, fluids, waves, and heat. This course presents concepts and methodologies for understanding physical phenomena, and is particularly useful preparation for upper ... More »
Dynamics: Forces, Motion and Newton's Laws I Fall 2007
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Abstract: Dynamics: Forces, Motion and Newton's Laws I. From Physics 8A: Introductory Physics - Fall 2007. Introduction to forces, kinetics, equilibria, fluids, waves, and heat. This course presents concepts and methodologies for understanding physical phenomena, and is particularly useful preparation for upper ... More »
Dynamics: Forces, Motion and Newton's Laws II Fall 2007
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Abstract: Dynamics: Forces, Motion and Newton's Laws II. From Physics 8A: Introductory Physics - Fall 2007. Introduction to forces, kinetics, equilibria, fluids, waves, and heat. This course presents concepts and methodologies for understanding physical phenomena, and is particularly useful preparation for upper ... More »
Dynamics: Forces, Motion and Newton's Laws III Fall 2007
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Abstract: Dynamics: Forces, Motion and Newton's Laws III. From Physics 8A: Introductory Physics - Fall 2007. Introduction to forces, kinetics, equilibria, fluids, waves, and heat. This course presents concepts and methodologies for understanding physical phenomena, and is particularly useful preparation for upper ... More »
Faraday's Law
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Abstract: Light a light bulb by waving a magnet. This demonstration of Faraday's Law shows you how to reduce your power bill at the expense of your grocery bill.
Fundamentals of Physics
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Abstract: This course provides a thorough introduction to the principles and methods of physics for students who have good preparation in physics and mathematics. Emphasis is placed on problem solving and quantitative reasoning. This course covers Newtonian mechanics, special relativity, gravitation, thermodynamics, ... More »
Hands on Learning, Demonstrations on Video
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Abstract: Watch science come alive in demonstrations of magnetic levitation techniques, ways to rig a sailboat, and much more.
Newtonian Physics
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Abstract: Some of the topics addressed in this book are: Scaling and Order-of-Magnitude Estimates; Velocity and Relative Motion; Acceleration and Free Fall; Force and Motion; Analysis of Forces; Newton's Laws in Three Dimensions; Vectors; Circular Motion; Gravity.
Physics I: Classical Mechanics, Fall 2005 8.012
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Abstract: Elementary mechanics, presented at greater depth than in 8.01. Newton's laws, concepts of momentum, energy, angular momentum, rigid body motion, and non-inertial systems. Uses elementary calculus freely. Concurrent registration in a math subject more advanced than 18.01 is recommended. In addition to ... More »
Physics I, Fall 1999
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Abstract: This course features lecture notes, problem sets with solutions, exams with solutions, links to related resources, and a complete set of videotaped lectures. The 35 video lectures by Professor Lewin, were recorded on the MIT campus during the Fall of 1999. Prof. Lewin is well-known at MIT and beyond ... More »
Physics I, Fall 2002
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Abstract: Elementary mechanics, presented at greater depth than in 8.01. Newton's laws, concepts of momentum, energy, angular momentum, rigid body motion, and non-inertial systems. Uses elementary calculus freely. In addition to the theoretical subject matter, several experiments in classical mechanics are performed ... More »
Physics I, Fall 2003
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Abstract: Introduces classical mechanics. Space and time: straight-line kinematics; motion in a plane; forces and equilibrium; experimental basis of Newton's laws; particle dynamics; universal gravitation; collisions and conservation laws; work and potential energy; vibrational motion; conservative forces; inertial ... More »
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