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The series consists of the following five volumes, each of which was originally used in a one-semester course at Berkeley: Mechanics, by Charles Kittel, et al. [1] Electricity and Magnetism, by Edward M. Purcell; Waves, by Frank S. Crawford Jr. Quantum Physics, by Eyvind H. Wichmann; Statistical Physics, by Frederick Reif
In fluid dynamics, gravity waves are waves in a fluid medium or at the interface between two media when the force of gravity or buoyancy tries to restore equilibrium. An example of such an interface is that between the atmosphere and the ocean, which gives rise to wind waves. A gravity wave results when fluid is displaced from a position of ...
In the early 1960s, Ruderman was a member of the committee that conceived the Berkeley Physics Course. He developed the first draft of the first volume, Mechanics, for use at Berkeley in 1963. With Charles Kittel and Walter D. Knight, he was co-author of the final published volume. [4]
The 1965 edition, now supposed to be freely available due to a condition of the federal grant, was originally published as a volume of the Berkeley Physics Course (see below for more on the legal status). The third edition, released in 2013, was written by David J. Morin for Cambridge University Press and included the adoption of SI units.
The Feynman Lectures on Physics is a physics textbook based on a great number of lectures by Richard Feynman, a Nobel laureate who has sometimes been called "The Great Explainer". [1] The lectures were presented before undergraduate students at the California Institute of Technology (Caltech), during 1961–1964.
His research covers quantum field theory and quantum electrodynamics (both concrete problems of particle physics as well as axiomatic quantum field theory, in which he, in 1975, made the connection to the Tomita–Takesaki theory). He is well known as the author of the book on quantum physics in the Berkeley Physics Course.
Propagation of a wave packet demonstrating a phase velocity greater than the group velocity. This shows a wave with the group velocity and phase velocity going in different directions. [1] The group velocity is positive (i.e., the envelope of the wave moves rightward), while the phase velocity is negative (i.e., the peaks and troughs move ...
His "Physics for Future Presidents" series of lectures, in which Muller teaches a synopsis of modern qualitative (i.e. without resorting to complicated math) physics, has been released publicly on YouTube by UC Berkeley and has been published in book form. It has been one of the most highly regarded courses at Berkeley.