On a hot day in Houston, the temperature was recorded at 37.8 deg. C. Determine the values for the speed of sound at this temperature in each case. Use your results in the third equation to determine the percentage difference. V(Tc) 331+ 0.6T = = (331) (773) V(TK) = 1/2 V(TC) - V(TK) (V(Tc) – V(TK))/2| %Diff = |fe x100 x 2.10 % 0.05% 0.17% 2,51 %
On a hot day in Houston, the temperature was recorded at 37.8 deg. C. Determine the values for the speed of sound at this temperature in each case. Use your results in the third equation to determine the percentage difference. V(Tc) 331+ 0.6T = = (331) (773) V(TK) = 1/2 V(TC) - V(TK) (V(Tc) – V(TK))/2| %Diff = |fe x100 x 2.10 % 0.05% 0.17% 2,51 %
College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:On a hot day in Houston, the temperature was recorded at 37.8 deg. C. Determine
the values for the speed of sound at this temperature in each case. Use your results
in the third equation to determine the percentage difference.
V(Tc) 331+ 0.6T
=
= (331) (773)
V(TK) =
1/2
V(TC) - V(TK)
(V(Tc) – V(TK))/2|
%Diff = |fe
x100
x
2.10 %
0.05%
0.17%
2,51 %
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