The description of a certain wave is given by the equation y(x,t) = (6.00 cm)cos(2π*(x/28 cm - t/0.031 s)). Calculate the wave's a. amplitude b. wavelength c. frequency d. speed of propagation e. direction of propagation f. position of the particle when x = 10 cm and t = 0.12 s. g. velocity of the particle when x = 10 cm and t = 0.12 s. h. acceleration of the particle x = 10 cm and t = 0.12 s. Answers NOTE: Round your answer to 3 significant digits only! Also, use pi = 3.14 a. Blank 1 cm b. Blank 2 cm c. Blank 3 Hz d. Blank 4 cm/s e. Blank 5 (state if left or right) f. Blank 6 cm g. Blank 7 cm/s h. Blank 8 cm/s²

College Physics
11th Edition
ISBN:9781305952300
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Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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The description of a certain wave is given by the equation
y(x,t) = (6.00 cm)cos(2π*(x/28 cm - t/0.031 s)).
Calculate the wave's
a. amplitude
b. wavelength
c. frequency
d. speed of propagation
e. direction of propagation
f. position of the particle when x = 10 cm and t = 0.12 s.
g. velocity of the particle when x = 10 cm and t = 0.12 s.
h. acceleration of the particle x = 10 cm and t = 0.12 s.
Answers
NOTE: Round your answer to 3 significant digits only! Also, use pi = 3.14
a. Blank 1 cm
b. Blank 2 cm
c. Blank 3 Hz
d. Blank 4 cm/s
e. Blank 5 (state if left or right)
f. Blank 6 cm
g. Blank 7 cm/s
h. Blank 8 cm/s²
Transcribed Image Text:The description of a certain wave is given by the equation y(x,t) = (6.00 cm)cos(2π*(x/28 cm - t/0.031 s)). Calculate the wave's a. amplitude b. wavelength c. frequency d. speed of propagation e. direction of propagation f. position of the particle when x = 10 cm and t = 0.12 s. g. velocity of the particle when x = 10 cm and t = 0.12 s. h. acceleration of the particle x = 10 cm and t = 0.12 s. Answers NOTE: Round your answer to 3 significant digits only! Also, use pi = 3.14 a. Blank 1 cm b. Blank 2 cm c. Blank 3 Hz d. Blank 4 cm/s e. Blank 5 (state if left or right) f. Blank 6 cm g. Blank 7 cm/s h. Blank 8 cm/s²
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