Fundamentals Of Physics - Volume 1 Only
Fundamentals Of Physics - Volume 1 Only
11th Edition
ISBN: 9781119306856
Author: Halliday
Publisher: WILEY
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Chapter 43, Problem 13P
To determine

To

(a) calculate the electric potential energy associated with the repulsion between the two fragments, when 236U fissions, assuming that the nuclei are spherical and are touching each other.

(b) compare this electric potential energy with the energy released in a typical fission event.

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Assume that immediately after the fission of 236U according to Eq. 43-1, the resulting 140Xe and 94Sr nuclei are just touching at their surfaces. (a) Assuming the nuclei to be spherical, calculate the electric potential energy associated with the repulsion between the two fragments. (b) Compare this energy with the energy released in a typical fission event.
A stationary 92U nucleus fissions spontaneously into two primary fragments, Br and La. (a) Calculate the disintegration energy. The required atomic masses are 86.920710 u for Br, 148.934370 u for La, and 236.045562 u for U. (b) How is the disintegration energy split between the two primary fragments? (c) Calculate the initial speed of each fragment. 57
Verify that, as reported in Table 43-1, fissioning of the 235U in 1.0 kg of UO2 (enriched so that 235U is 3.0% of the total uranium) could keep a 100 W lamp burning for 690 y.
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