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Waves (Berkeley Physics Course, Vol. 3), by Frank S. Crawford Jr.
Download Ebook Waves (Berkeley Physics Course, Vol. 3), by Frank S. Crawford Jr.
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Volume III entirely devoted to the study of waves. There are water, sound, light, radio, seismic, de Broglie waves and others. Objective is to acquire familiarity with many examples of waves and achieve a realization of the applicability and generality of the concepts. Optics Kit for Waves includes diffraction grating, polarizers, quarter and half-wave plates and filters. (Description by http-mart)
- Sales Rank: #105311 in Books
- Brand: McGraw Hill
- Published on: 1968-06-01
- Ingredients: Example Ingredients
- Original language: English
- Number of items: 1
- Dimensions: 10.00" h x 8.50" w x 1.25" l,
- Binding: Hardcover
- 600 pages
Most helpful customer reviews
18 of 19 people found the following review helpful.
Scary at first (to this nonengineer), but...yes!
By Conal
Scattered through the book are a number of wonderfully informal "kitchen physics" type experiments.
Example, p. 378: "Why is the sky blue?" Pour some milk into a glass of water, shine a flashlight toward yourself from the back side of the glass and see, in effect, the setting sun (red). Now shine it from one side of the glass and see, instead, the daytime sky (blue). It works!! (This is my quick synopsis. Crawford's presentation is worded much better, and is tied back into his on-going presentation of certain physics equations of course.)
So, why "Scary at first..."? Because just a few pages into Chapter 1, you see stuff like this...
sin (psi) = psi - (psi^3/3!) + (psi^5/5!) - ..., (the Taylor's series expansion)
...and two pages before that (at the very beinning of the book) you see this...
psi(x) = A cos (wt + phi1)
...i.e., that Schroedinger-looking psi (and the "phi-1" variant on Greek letter phi) where you might expect the following which occurs in most "normal" textbooks:
x(t) = A cos (wt + phi)
(I've borrowed 'w' to represent little omega throughout.)
In short, when you first open the book, it has a distinctly "advanced" flavor, beyond a normal college level physics text. But against that you have to weigh the effect of Crawford's many "Home experiments" (with tuning forks or an empty paper towel roll bonked on your head, etc). Overall, even a nonengineer might find a lot to appreciate in this book.
(Personal note: When I was around 10 to 12 years old, Frank Crawford, the author, was my mother's landlord, in Berkeley, and I have vivid memories of him, half a century later -- as he worked on his Ph.D. dissertation at our shared diningroom table, and took radios apart like a kid. Advanced and "scary" though his book may look, I know he was simply not like that. Rather, he was a child at heart, with many of the same qualities often cited in connection with Richard Feynman, but minus Feynman's competitive edginess.)
25 of 25 people found the following review helpful.
Have fun and learn all about waves
By A Customer
This is a fantastic book. It must have taken decades for the author (Frank Crawford) to write all these things, to imagine so many simple experiments, to invent such instructive exercises. The approach is very concrete, with little mathematics in the beginning. Actually, the mathematics grows with the book in a very natural way. As one would expect, the apotheosis of this great show happens when light waves, that is optics, appears. There is a small kit of quarter plates, polaroids, etc, which permit you to make beautiful observations. The explanation of how Edwin Land hit on the idea of artificial nicols (polaroids) is one of my favorites. Whenever I teach anything connected to waves, even mathematical topics, like the Fourier theorem, I always give a look at this volume. Usually it pays! It is a pity that, by its content, it seldom fits in the usual courses.
13 of 16 people found the following review helpful.
For Inquisitive minds
By Amazon Customer
Maybe the best volume of Berkeley physics. For those who are aware of series Berkeley Physics I have to say that it can be compared only with the second in Emags. It is quite an extensive book and covers almost everything concerning wave theory. Although it is rather old it is still one of the best reference books which however doesn't include the application of wave theory in quantum mechanics. The author explains with every detail the material and provides the reader with pictures that make the book comprehensive. It may be a big book but the reader can choose the chapters he or she wants and read the independantly. Although the material covers many applications of wave theory it is suggested for those who just want to learn the basic principles.
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