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The velocity of sound in gases in tubes
The main objects of the series of experiments described in the present paper were two-fold: (a) to make precision measurements, over a moderate temperature-range, of the velocity of sound-waves in gases contained in resonating tubes; (b) to investigate the applicability of the Helmholtz-Kirchhoff e...
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Published in: | Proceedings of the Royal Society of London. Series A, Containing papers of a mathematical and physical character Containing papers of a mathematical and physical character, 1933-07, Vol.141 (843), p.123-143 |
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container_end_page | 143 |
container_issue | 843 |
container_start_page | 123 |
container_title | Proceedings of the Royal Society of London. Series A, Containing papers of a mathematical and physical character |
container_volume | 141 |
creator | Kaye, George William Clarkson Sherratt, G. G. |
description | The main objects of the series of experiments described in the present paper were two-fold: (a) to make precision measurements, over a moderate temperature-range, of the velocity of sound-waves in gases contained in resonating tubes; (b) to investigate the applicability of the Helmholtz-Kirchhoff expression for the relation between the “tree-space” velocity and the “tube” velocity in a gas. As regards (b) different observers in the past have reached diverse conclusions as to the dependence of tube-velocity on the frequency, on the roughness of the wall surface, and on the nature of the material of the tube. |
doi_str_mv | 10.1098/rspa.1933.0107 |
format | article |
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As regards (b) different observers in the past have reached diverse conclusions as to the dependence of tube-velocity on the frequency, on the roughness of the wall surface, and on the nature of the material of the tube.</description><subject>Acoustic resonance</subject><subject>Audio frequencies</subject><subject>Carbon dioxide</subject><subject>Gases</subject><subject>Hydrogen</subject><subject>Quartz crystals</subject><subject>Reflectors</subject><subject>Steam</subject><subject>Telephones</subject><subject>Thermocouples</subject><issn>0950-1207</issn><issn>2053-9150</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>1933</creationdate><recordtype>article</recordtype><recordid>eNp9jzFPwzAQhS0EEqWwMjBlY0q5i-PYHktEC1IRCEphs9zEgRRoip1UhF9PQlAlhGA6n57fvfcRcogwQJDixLqVHqCkdAAIfIv0AmDUl8hgm_RAMvAxAL5L9pxbADCGkeiR4-mT8dbmpUjysvaKzHNFtUy9fOk9amdc-yiruXH7ZCfTL84cfM8-uRudTeNzf3I1voiHEz8JMSp9nSYINJhzFDIVQvCA8TDiATdaS5kimCwzOuIZS0PBKTMUDVBtgLNwHnFN-2TQ3U1s4Zw1mVrZ_FXbWiGoFlO1mKrFVC1mY3jrDLaom2INhylrtSgqu2xWdXN7PUQJbI0h5iJsTIK2NkFBfeSrr2utrhpd5c5VRrW_fob8zqT_Zf7Z9KhzLVxZ2A2XjIKmU5_4nZi70rxvRG2fVcQpZ2omQnU5i-9P44eRGtNPgn-SKA</recordid><startdate>19330703</startdate><enddate>19330703</enddate><creator>Kaye, George William Clarkson</creator><creator>Sherratt, G. 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A</addtitle><date>1933-07-03</date><risdate>1933</risdate><volume>141</volume><issue>843</issue><spage>123</spage><epage>143</epage><pages>123-143</pages><issn>0950-1207</issn><eissn>2053-9150</eissn><abstract>The main objects of the series of experiments described in the present paper were two-fold: (a) to make precision measurements, over a moderate temperature-range, of the velocity of sound-waves in gases contained in resonating tubes; (b) to investigate the applicability of the Helmholtz-Kirchhoff expression for the relation between the “tree-space” velocity and the “tube” velocity in a gas. As regards (b) different observers in the past have reached diverse conclusions as to the dependence of tube-velocity on the frequency, on the roughness of the wall surface, and on the nature of the material of the tube.</abstract><cop>London</cop><pub>The Royal Society</pub><doi>10.1098/rspa.1933.0107</doi><tpages>21</tpages><oa>free_for_read</oa></addata></record> |
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issn | 0950-1207 2053-9150 |
language | eng |
recordid | cdi_jstor_primary_96208 |
source | JSTOR Archival Journals and Primary Sources Collection; Royal Society Publishing Jisc Collections Royal Society Journals Read & Publish Transitional Agreement 2025 (reading list) |
subjects | Acoustic resonance Audio frequencies Carbon dioxide Gases Hydrogen Quartz crystals Reflectors Steam Telephones Thermocouples |
title | The velocity of sound in gases in tubes |
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