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 2.26P
To determine

(a)

The velocity of subatomic particle A just before the decay.

To determine

(b)

To Derive:

An expression for the mass of atom A in terms of mass of atom B and momentum.

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A subatomic particle A decays into two identical particles B, A=B + B particles. The two B are observed to have exactly equal and opposite momenta of magnitude P.i) What can be deduced about the velocity of A just before the decay? ii) Derive an expression for the mass mOA, of A in terms of mOB and PB.
A spaceship has length 120 m, diameter 25 m, and mass 4.0 * 103 kg as measured by its crew. As the spaceship moves parallel to its cylindrical axis and passes us, we measure its length to be 90 m. (a) What do we measure its diameter to be? (b) What do we measure the magnitude of its momentum to be?
A 212^Bi (bismuth) nucleus undergoes alpha decay, resulting in a 208^Tl (thallium) nucleus and a 4He (helium) nucleus as per the following reaction: 212^Bi →208^Tl + 4^He The masses of each nucleus is listed in the table below. Given that the bismuth atom was at rest before the reaction, if the resulting thallium nucleus is traveling 3.3 × 105 m/s, how fast is the helium nucleus traveling?
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