Physics: Principles with Applications
Physics: Principles with Applications
6th Edition
ISBN: 9780130606204
Author: Douglas C. Giancoli
Publisher: Prentice Hall
Question
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Chapter 32, Problem 32P
To determine

(a)

What is the energy width of n0.

Expert Solution
Check Mark

Answer to Problem 32P

Solution:

The energy width of n0 is 1300ev.

Explanation of Solution

Given info:

Particle =n0

Concept used:

In a reaction charge, Baryon number, lepton number and strangeness number are conserved.

Baryon number: proton and neutrons both have baryons.

Lepton number      LeV¯e                           1e+                           1V¯μ                           1μ+                          1V¯Σ                           1Σ+                          1Ve                              1e                              1Vμ                              1μ                             1VΣ                              1Σ                              1

Strangeness number:

Strangeness number of quarks up, down and strange.

                   strangenessU                   0d                    0s                   1

Calculation:

Substitute

h=6.63×1034JS,Δt=5.1×1019s.ΔE=6.63×1034JS2π×(5.1×1019S)=2.069×1016J=2.069×1016J×1ev1.6×1019J=1300ev.

Therefore, the energy width of n0=1300ev.

To determine

(b)

What is the energy width of p+.

Expert Solution
Check Mark

Answer to Problem 32P

Solution:

The energy width of p+ is 150Mev.

Explanation of Solution

Given info:

Given particle is p+

Concept used:

B+ Is the antiparticle of B

B0 Is neutral and must have bottom quark.

B¯0 Is the antiparticle of B0.

Calculations:

Substitute

h=6.63×1034Js,Δt=4.4×1024s.ΔE=6.63×1034Js2π×(4.4×1024s)=2.4×1011J=2.4×1011J×1Mev1.6×1013J=150Mev.

Chapter 32 Solutions

Physics: Principles with Applications

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