3. Based on Eqs. dr 8 = - 26 (1.26) r [r² (1 – 2Z'c²) – 82]* (1.27) and dz B+ 2yx cos-1 (1.30) Va+ Bz + yz² [3² – 4ay, obtain ZZ'e? cot (1.32) 2E Note: do not copy the processes in your textbook. You can take it as a reference, but need contain more detailed sub-steps.

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The textbook can be found on Z Library: Introduction to Nuclear and Particle Physics by A. Das and T. Ferbel, the second edition. I can't link it since I don't want my account to be terminated.

This question comes from:

Chapter 2, section 2.2, Chapter 1, section 1.2

Chapter 1, section 1.3, Chapter 2, section 2.2

3. Based on Eqs.
dr
e = T - 26
(1.26)
r [r2 (1 – 22'c2) – 89]"
1
(1.27)
and
B+ 2ya
32 – 4ay
da
-1
Cos
(1.30)
%3D
Va + Br + yæ²
obtain
b =
ZZ'e?
cot
(1.32)
2E
2
Note: do not copy the processes in your textbook. You can take it as a reference, but need contain more
detailed sub-steps.
--15
Transcribed Image Text:3. Based on Eqs. dr e = T - 26 (1.26) r [r2 (1 – 22'c2) – 89]" 1 (1.27) and B+ 2ya 32 – 4ay da -1 Cos (1.30) %3D Va + Br + yæ² obtain b = ZZ'e? cot (1.32) 2E 2 Note: do not copy the processes in your textbook. You can take it as a reference, but need contain more detailed sub-steps. --15
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