The first five energy levels of the hydrogen atom are at -13.6 eV, -3.4 eV, -0.85 eV, and -0.85 eV. The absorption spectrum of a hydrogen plasma is a spectrum with dark lines corresponding to all the possible transitions between vels. Sketch the spectrum you would expect to see at wavelengths from 400 nm You do not need to use colour in your sketch, but you should provide an r-axis rks and labels in nm, label the approximate red, green and blue regions, and dark line with its wavelenath, Show your calculations of the wavelengths (Hint:

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter15: Introduction To Electronic Spectroscopy And Structure
Section: Chapter Questions
Problem 15.69E
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The first five energy levels of the hydrogen atom are at –13.6 eV, -3.4 eV,
-1.51 eV, -0.85 eV, and -0.85 eV. The absorption spectrum of a hydrogen plasma is a
continuous spectrum with dark lines corresponding to all the possible transitions between
these five levels. Sketch the spectrum you would expect to see at wavelengths from 400 nm
to 700 nm. You do not need to use colour in your sketch, but you should provide an x-axis
with tickmarks and labels in nm, label the approximate red, green and blue regions, and
label each dark line with its wavelength. Show your calculations of the wavelengths. (Hint:
you should show three dark lines.)
Transcribed Image Text:The first five energy levels of the hydrogen atom are at –13.6 eV, -3.4 eV, -1.51 eV, -0.85 eV, and -0.85 eV. The absorption spectrum of a hydrogen plasma is a continuous spectrum with dark lines corresponding to all the possible transitions between these five levels. Sketch the spectrum you would expect to see at wavelengths from 400 nm to 700 nm. You do not need to use colour in your sketch, but you should provide an x-axis with tickmarks and labels in nm, label the approximate red, green and blue regions, and label each dark line with its wavelength. Show your calculations of the wavelengths. (Hint: you should show three dark lines.)
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