EBK AN INTRODUCTION TO MODERN ASTROPHYS
EBK AN INTRODUCTION TO MODERN ASTROPHYS
2nd Edition
ISBN: 9781108390248
Author: Carroll
Publisher: YUZU
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Chapter 8, Problem 8.1P
To determine

The proof that at room temperature thermal energy is kT1/140eV, the temperature for 1eV and 13.6eV.

Expert Solution & Answer
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Answer to Problem 8.1P

It is proved that at room temperature thermal energy is kT1/140eV, the temperature for 1eV and 13.6eV thermal energy are 11604.4K and 157820.22K respectively.

Explanation of Solution

Write the expression for the thermal energy.

    Thermalenergy=kT        (1)

Here, k is the Boltzmann constant and T is the temperature.

Conclusion:

Substitute 8.6174×105eV/K for k and 300K for T in equation (1).

    Thermalenergy=(8.6174×105eV/K)(300K)=0.0253eV=140eV

Substitute 8.6174×105eV/K for k and 1eV for Thermalenergy in equation (1).

    (1eV)=(8.6174×105eV/K)TT=(1eV8.6174×105eV/K)=11604.4K

Substitute 8.6174×105eV/K for k and 13.6eV for Thermalenergy in equation (1).

    (13.6eV)=(8.6174×105eV/K)TT=(13.6eV8.6174×105eV/K)=157820.22K

Thus, it is proved that at room temperature thermal energy is kT1/140eV, the temperature for 1eV and 13.6eV thermal energy are 11604.4K and 157820.22K respectively.

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