Light Intensity, Blackbody Radiation and the Stefan-Boltzmann Law.
edited by
Ramon Torres-Isea
An intermediate level experiment to determine the emission spectrum from a heated blackbody object (filament lamp) as a function of temperature using a photo-diode and a set of interference filters. Compare the results with the classical theory of Rayleigh-Jeans and the quantum theories of Stefan-Boltzmann and Planck. Use the latter to determine the temperature of an unknown high-temperature source (halogen lamp).
This document is Chapter 2 of the "Waves, Light, and Heat Laboratory Manual" for Physics 341 at The University of Michigan, Ann Arbor, Michigan. Other chapters are included in the AAPT Advanced Labs collection.
<a href="https://advlabs.aapt.org/items/detail.cfm?ID=8504">Torres-Isea, Ramon, ed. Light Intensity, Blackbody Radiation and the Stefan-Boltzmann Law.. May 6, 2009.</a>
Light Intensity, Blackbody Radiation and the Stefan-Boltzmann Law., edited by R. Torres-Isea (1997), <https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8504&DocID=958>.
Torres-Isea, R. (Ed.). (2009, May 6). Light Intensity, Blackbody Radiation and the Stefan-Boltzmann Law.. Retrieved September 16, 2024, from https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8504&DocID=958
Torres-Isea, Ramon, ed. Light Intensity, Blackbody Radiation and the Stefan-Boltzmann Law.. May 6, 2009. https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8504&DocID=958 (accessed 16 September 2024).
@misc{
Title = {Light Intensity, Blackbody Radiation and the Stefan-Boltzmann Law.},
Volume = {2024},
Number = {16 September 2024},
Month = {May 6, 2009},
Year = {1997}
}
%0 Electronic Source %D May 6, 2009 %T Light Intensity, Blackbody Radiation and the Stefan-Boltzmann Law. %E Torres-Isea, Ramon %V 2024 %N 16 September 2024 %8 May 6, 2009 %9 application/pdf %U https://www.compadre.org/Repository/document/ServeFile.cfm?ID=8504&DocID=958
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