a. What is the temperature that needed to make the ehely electromagnetic radiation at the wavelength (200 nm) is four times that at (400 nm)? b. An electromagnetic wave with frequency of v moving in the direction that is generally determined by an angle of 8 with the z-direction, derive a relation to calculate the distance between any two adjacent nodes that made by this wave, and then determine the oscillation boundary condition for this wave within the cavity. e. From the overall study of the spectral line broadening classification, what are the important things that can be conclude?

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a. What is the temperature that needed to make the energy density of
electromagnetic radiation at the wavelength (200 nm) is four times that at
(400 nm)?
b. An electromagnetic wave with frequency of v moving in the direction that is
generally determined by an angle of 8 with the z-direction, derive a relation to
calculate the distance between any two adjacent nodes that made by this wave,
and then determine the oscillation boundary condition for this wave within the
cavity.
c. From the overall study of the spectral line broadening classification, what are
the important things that can be conclude?
Transcribed Image Text:a. What is the temperature that needed to make the energy density of electromagnetic radiation at the wavelength (200 nm) is four times that at (400 nm)? b. An electromagnetic wave with frequency of v moving in the direction that is generally determined by an angle of 8 with the z-direction, derive a relation to calculate the distance between any two adjacent nodes that made by this wave, and then determine the oscillation boundary condition for this wave within the cavity. c. From the overall study of the spectral line broadening classification, what are the important things that can be conclude?
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