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Time Alignment T/A Delay, etc.
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<blockquote data-quote="djman37" data-source="post: 5372447" data-attributes="member: 554697"><p>speed of sound is roughly: 343 m/s</p><p></p><p>The REAL formula:</p><p></p><p>v = 331 m/s + (0.6 m/s/C)•T</p><p></p><p>where T is the temperature of the air in degrees Celsius. Using this equation to determine the speed of a sound wave in air at a temperature of 20 degrees Celsius yields the following solution.</p><p></p><p>v = 331 m/s + (0.6 m/s/C)•T</p><p></p><p>v = 331 m/s + (0.6 m/s/C)•(20 C)</p><p></p><p>v = 331 m/s + 12 m/s</p><p></p><p>v = 343 m/s</p><p></p><p>linky <a href="http://www.glenbrook.k12.il.us/GBSSCI/PHYS/CLASS/sound/u11l2c.html" target="_blank">http://www.glenbrook.k12.il.us/GBSSCI/PHYS/CLASS/sound/u11l2c.html</a></p><p></p><p>i googled speed of sound to time</p></blockquote><p></p>
[QUOTE="djman37, post: 5372447, member: 554697"] speed of sound is roughly: 343 m/s The REAL formula: v = 331 m/s + (0.6 m/s/C)•T where T is the temperature of the air in degrees Celsius. Using this equation to determine the speed of a sound wave in air at a temperature of 20 degrees Celsius yields the following solution. v = 331 m/s + (0.6 m/s/C)•T v = 331 m/s + (0.6 m/s/C)•(20 C) v = 331 m/s + 12 m/s v = 343 m/s linky [URL="http://www.glenbrook.k12.il.us/GBSSCI/PHYS/CLASS/sound/u11l2c.html"]http://www.glenbrook.k12.il.us/GBSSCI/PHYS/CLASS/sound/u11l2c.html[/URL] i googled speed of sound to time [/QUOTE]
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