Modern Physics For Scientists And Engineers
Modern Physics For Scientists And Engineers
2nd Edition
ISBN: 9781938787751
Author: Taylor, John R. (john Robert), Zafiratos, Chris D., Dubson, Michael Andrew
Publisher: University Science Books,
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Chapter 2, Problem 2.5P
To determine

To Verify:

Velocities measured in frame S when S and S have relativistic relation.

Total classical momentum measured in S is not conserved.

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Problem 2.27: Determine the velocity for which the discrepancy between the classical expression for the kinetic energy and the true expression from relativity differ by 0.01%; in other words, determine the maximum velocity for which we can use the classical expression for the kinetic energy and trust our results to within 0.01% accuracy.
2.9. (a) Solve the integral ...| (dx .dx3N) 3N and use it to determine the "volume" the relevant region of the phase space of an extreme relativistic gas ( = pc) of 3N particles moving in one dimension. Determine, as well, the number of ways of distributing a given energy E among this system of particles and show that, asymptotically, w0 = h³N. (b) Compare the thermodynamics of this system with that of the system considered in Problem 2.8.
Write down the relationship between the classical kinetic energy E and momentum p for a body of mass m. Please use the usual "+", (for multiplication), and "/" (for division) signs (without the quotes) for algebraic symbols: e.g. use p*c for p X c. For powers use "^-3" (e.g use "p^-3" for p'), for VE use "sqrt 3" (all without the quotes). For complex calculations you must indicate the correct order of operations: for example use "m/(k*c)" or "m/k/c" for . Use "Check response" button that the answer is as you expect before submission. т %3D kc
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