College Physics 11E Global Edition
College Physics 11E Global Edition
11th Edition
ISBN: 9781337620338
Author: SERWAY/VUILLE
Publisher: CENGAGE Learning Custom Publishing
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Chapter 30, Problem 36P

(a)

To determine

The particle corresponding to the quark composition u¯u¯d¯ and the charge of the particle.

(b)

To determine

The particle corresponding to the quark composition u¯d¯d¯ and the charge of the particle.

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The range of the nuclear strong force is believed to be about 1.2 x 10-15 m. An early theory of nuclear physics proposed that the particle that “mediates” the strong force (similar to the photon mediating the electromagnetic force) is the pion. Assume that the pion moves at the speed of light in the nucleus, and calculate the time ∆t it takes to travel between nucleons. Assume that the distance between nucleons is also about 1.2 x 10-15 m. Use this time ∆t to calculate the energy ∆E for which energy conservation is violated during the time ∆t. This ∆E has been used to estimate the mass of the pion. What value do you determine for the mass? Compare this value with the measured value of 135 MeV/c2 for the neutral pion.
The following interaction is proposed between a proton and a pion. Which conservation rules are violated in this interaction?* p' + * → K- + n* The quark content of the T - is ud and the quark content of the K- is ūs. Three conservation rules are considered I. baryon number II. charge III. strangeness. I and III only I, II, and II Il and III only I and Il only
The quarks in a particle are confined, meaning individual quarks cannot be directly observed. Are gluons confined as well?Explain
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