- Koenig's manometric flame apparatus
Koenig's manometric flame apparatus was a laboratory instrument invented in
1862 by the German physicistRudolph Koenig , and used to visualizesound wave s. It was the nearest equivalent of the modernoscilloscope in the late nineteenth and early twentieth centuries.Description
The manometric flame apparatus consisted of a chamber which acted in the same way as a modern
microphone . Sound from the source to be measured was concentrated by means of a horn or tube into one half of the capsule chamber. The chamber was divided in two by an elastic diaphragm, usually rubber. The sound caused the diaphragm to vibrate whichmodulated a flow of flammable illumination gas passing through the other half of the chamber. The illumination gas was passed to aBunsen burner , the flame of which would then increase or decrease in size at the same frequency as the sound source. Jim & Rhoda Morris at SciTechAntiques.] [http://www.phys.cwru.edu/ccpi/Flame_manometer.html Flame manometer] Case Western Reserve University Physics Department]The change in flame size was too fast to be easily seen with the naked eye and a
stroboscope , usually in the form of a rotating many sided mirror was used to view the flame. The frequency of the sound could then be calculated from the apparent distance between the flame images in the mirror and the known speed of its rotation.Alexander Graham Bell used this type of equipment to study the performance of his microphones and demonstrated it in his display at the 1876
Philadelphia Centenarian Exhibition. He replaced the rubber diaphragm with an iron disc which was driven by anelectromagnet with current fed from a microphone. This apparatus was capable of giving quantitative measures of the performance of his microphones. [http://physics.kenyon.edu/EarlyApparatus/Acoustics/Manometric/manometric.html Manometric Flame Apparatus] , Kenyon College]A type of fourier analyzer can be constructed by connecting a number of manometric flame capsules each to a helmholz resonator tuned to either the
fundamental frequency of the sound to be analyzed, or one of itsharmonic s. The flames produced from each capsule are then an indication of the strength of each of the Fourier components of the sound. [http://physics.kenyon.edu/EarlyApparatus/Rudolf_Koenig_Apparatus/Fourier_Analysis/Fourier_Analysis.html Fourier Analysis] Kenyon College.]Notes
References
1. [http://www.scitechantiques.com/belltelephone/pages/Sound_Analysiers.htm The Koinge manometric flame apparatus] Jim & Rhoda Morris at SciTechAntiques. Accessed March 2008
2. [http://physics.kenyon.edu/EarlyApparatus/Acoustics/Manometric/manometric.html Manometric Flame Apparatus] Kenyon College. Gambier, Ohio. Accessed March 2008
3. [http://physics.kenyon.edu/EarlyApparatus/Rudolf_Koenig_Apparatus/Fourier_Analysis/Fourier_Analysis.html Fourier Analysis] Kenyon College. Gambier, Ohio. Accessed March 2008
4. [http://www.phys.cwru.edu/ccpi/Flame_manometer.html Flame manometer] Case Western Reserve University Physics Department. Accessed March 2008
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