Two rocks, rock A at x = 0 m and rock B at x = 1.0 m, are dropped simultaneously (at t = 0 s) into a still pond, instantly creating ripples that travel toward the other rock. Rock A forms ripples of amplitude 0.18 m and speed 0.32. Rock B forms ripples of amplitude 0.35 m and speed 0.42 m. Assume that the amplitude of the ripples do not decay as the ripples propagate outward. Calculate the position (in meters) where the two ripples meet. 5.36 m x 5.36 You have 2 errors to correct: Your answer is outside the acceptable bounds. You may have made a calculation or rounding

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Homework due Feb 7, 2023 09:00 CST
Ripples in a Pond Part I
Two rocks, rock A at x = 0 m and rock B at x = 1.0 m, are dropped simultaneously (at t = 0 s) into a still pond, instantly
creating ripples that travel toward the other rock. Rock A forms ripples of amplitude 0.18 m and speed 0.32 Rock B
forms ripples of amplitude 0.35 m and speed 0.42 m
Assume that the amplitude of the ripples do not decay as the ripples propagate outward.
Calculate the position (in meters) where the two ripples meet.
5.36
5.36
You have 2 errors to correct: Your answer is outside the acceptable bounds. You may have made a calculation or rounding
error. Also, your answer does not have the correct number of significant digits.
Submit
m x
You have used 2 of 10 attempts
Ripples in a Pond Part II
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When the two sets of ripples meet, they interfere, creating a wave that is a superposition of the two sets of rippples.
Assuming that the amplitudes of the ripples do not decay while propagating, calculate the amplitude of the resulting wave.
m
Transcribed Image Text:Homework due Feb 7, 2023 09:00 CST Ripples in a Pond Part I Two rocks, rock A at x = 0 m and rock B at x = 1.0 m, are dropped simultaneously (at t = 0 s) into a still pond, instantly creating ripples that travel toward the other rock. Rock A forms ripples of amplitude 0.18 m and speed 0.32 Rock B forms ripples of amplitude 0.35 m and speed 0.42 m Assume that the amplitude of the ripples do not decay as the ripples propagate outward. Calculate the position (in meters) where the two ripples meet. 5.36 5.36 You have 2 errors to correct: Your answer is outside the acceptable bounds. You may have made a calculation or rounding error. Also, your answer does not have the correct number of significant digits. Submit m x You have used 2 of 10 attempts Ripples in a Pond Part II Save When the two sets of ripples meet, they interfere, creating a wave that is a superposition of the two sets of rippples. Assuming that the amplitudes of the ripples do not decay while propagating, calculate the amplitude of the resulting wave. m
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