For Silver atom, with one electron per atom at room temperature, the number density n = 5.86×1028 m³. Find the nature of the degeneracy of the system under consideration. A cubical cavity of side 1m is filled with black body radiation. Calculate the number of independent standing waves with wavelengths in the range 8.0 mm and 9.0 mm.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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For Silver atom, with one electron per atom at room temperature, the number density
n = 5.86×1028 m³. Find the nature of the degeneracy of the system under consideration.
A cubical cavity of side 1m is filled with black body radiation. Calculate the number of
independent standing waves with wavelengths in the range 8.0 mm and 9.0 mm.
Transcribed Image Text:For Silver atom, with one electron per atom at room temperature, the number density n = 5.86×1028 m³. Find the nature of the degeneracy of the system under consideration. A cubical cavity of side 1m is filled with black body radiation. Calculate the number of independent standing waves with wavelengths in the range 8.0 mm and 9.0 mm.
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