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Fiber Optics. Modern Optics. Introduction to Nonlinear Optics and its Applications. Optical Sensors.Modern Physics; Lecture 34 Play Video: The Wonderful Quantum World In this video lecture, Prof. Walter Lewin discusses Classical Mechanics, and in spite of all of its impressive predictive power, fails to explain many microscopic behaviors. This led to the development of Quantum Mechanics, where electrons orbit nuclei in discrete energy levels. General definition of physics as a collection of laws that describe everything. Isaac Newton and classical mechanics. Max Planck and classical electromagnetism. "Ultraviolet catastrophe." Definition of energy. Modern Physics; Major developments in physics during the 20th century, including quantum mechanics, special relativity, and general. Text. The Feynman Lectures on Physics (Vol I, II & III) Video. The Character of Physical Law ( Messenger Lectures at Cornell University) Video. The Douglas Robb Memorial Lectures (from the University of Auckland in New Zealand) NPTEL Courses. Video. Astrophysics and Cosmology.
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All we have to know is one position and the associated velocity of a planet and the entire orbit follows. Doppler shift is introduced with sound waves, then extended to electromagnetic waves radiation.
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Combined with Newton's law of universal gravitation, this can lead to the hpysics parameters and the mass of both stars in a binary star system. Walter Lewin lectures on Rolling Motion and Gyroscopes. This material is Very Non-intuitive. Static equilibrium is only achieved when the net external force AND net external torque on an object are both zero. Walter Lewin discusses Elasticity and Young's Modulus.
The fractional length deformation of a material the strain depends on the force per unit area the stress.
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The stress vs. Walter Lewin discusses concepts such as gases and incompressible liquids, Pascal's Physics, hydrostatic and barometric pressure. Walter Lewin discusses concepts such as Hydrostatics, Archimedes' Principle, Fluid Dynamics, factors which make a boat float, and Bernoulli's Equation. Walter Lewin reviews selected concepts previously covered in lectures 16 through Walter Lewin lectures on the simple harmonic oscillations Video of suspended solid bodies which are related to their geometry.
He also discusses how torsional pendulum oscillates in the horizontal plane, and the SHO does NOT depend on the small angle approximation. Walter Lewin lectures on systems consisting of pendulums and springs and how they can freely oscillate at their natural download also called normal modes. He also discusses when we expose a system to a wide spectrum of frequencies, the response will be very large at the normal mode frequencies resonances of that system.
Examples include musical instruments standing waves on violin strings and pressure waves lecture wind instrumentsand torsional standing waves on a bridge driven by strong winds. Walter Lewin discusses how heat raises the temperature, and usually the volume of the material that absorbs the heat.
He also lectures on the linear and cubical thermal expansion coefficients of metals including mercurywhich are described and demonstrated. Ice is also discussed video a special case. Walter Lewin introduces the ideal-gas law and the rate of momentum transfer from the gas molecules to the vessel walls, which is related to pressure. Physics concepts of phase diagrams and phase transitions are also introduced, and they are explored with fire extinguishers, boiling water, and cooled balloons filled with air.
The ideal-gas law holds approximately when you have only gas; it doesn't hold whenever there is any liquid present. Walter Lewin download Classical Mechanics, and in spite of all of its impressive predictive power, fails to explain many microscopic behaviors. This led to the development of Quantum Mechanics, where electrons orbit nuclei in discrete energy levels, light can behave as a particle, and particles lecture as waves.
The location of microscopic particles can only be expressed in terms of probabilities. Heisenberg's uncertainty principle is also discussed and demonstrated. Walter Lewin talks about some of the highlights from his early days at MIT. It began with balloon flights at very high altitude to make observations of the stars in X-rays.
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In the seventies and eighties he made important contributions to our understanding of X-ray bursts thermo-nuclear fusion episodes on neutron stars. Subject: Physics. All rights reserved. Classical Mechanics. Lecture 1 Play Video. Measurements of Space and Time This lecture is downlad units, dimensions, measurements and associated uncertainties, dimensional analysis, and scaling arguments. Lecture 2 Play Video. Speed, Velocity and Acceleration This lecture is an introduction to kinematics which ultimately leads in Lecture 4 to trajectories in 3 dimensions.
Lecture 3 Play Video. Vectors This lecture is about units, dimensions, measurements and associated uncertainties, dimensional analysis, and scaling arguments. Lecture 4 Play Video.
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Lecture 5 Play Video. Circular Motion In this video lecture, Prof. Lecture 6 Play Video. Newton's Three Laws In this video lecture, Prof. Lecture 7 Play Video. Weight and Weightlessness In this video lecture, Prof. Lecture 8 Play Video. Frictional Forces In this video lecture, Prof. Lecture 9 Play Video. Exam Review In this video lecture, Prof.
Lecture 10 Play Video. Lecture 11 Play Video. Work and Mechanical Energy In this video lecture, Prof. Lecture 12 Play Video. Resistive Forces In this video lecture, Prof. Lecture 13 Play Video. Lecture 14 Play Video. Lecture 15 Play Video. Collisions and the Center of Mass In this video lecture, Prof. Lecture 16 Play Video. Elastic and Inelastic Collisions In this video lecture, Prof.
Lecture 17 Play Video.