Two waves travelling in the same direction are given by: y1 = 0.2 sin(2rtx-20t+p) and y2 = 0.2 sin(2ttx-20t), where x and y are in meters and t is in seconds. If the %3D two waves start at the same moment, then the path difference, Ax, corresponding to a fully destructive interference is: O 1/3 m 2/3 m O 1/2 m 4/3 m 3/4 m

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Chapter3: Interference
Section: Chapter Questions
Problem 56AP: Two sources as in phase and emit waves with =0.42 m. Determine whether constructive or destructive...
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Two waves travelling in the same direction are given by: y1 = 0.2 sin(2rtx-20t+p)
%3D
and y2 = 0.2 sin(2ttx-20t), where x and y are in meters and t is in seconds. If the
two waves start at the same moment, then the path difference, Ax,
corresponding to a fully destructive interference is:
O 1/3 m
2/3 m
1/2 m
O 4/3 m
O3/4 m
Tbrotor arith a fixed
Transcribed Image Text:Two waves travelling in the same direction are given by: y1 = 0.2 sin(2rtx-20t+p) %3D and y2 = 0.2 sin(2ttx-20t), where x and y are in meters and t is in seconds. If the two waves start at the same moment, then the path difference, Ax, corresponding to a fully destructive interference is: O 1/3 m 2/3 m 1/2 m O 4/3 m O3/4 m Tbrotor arith a fixed
The left end of a taut string of length L, is connected to a vibrator with a fixed
frequency f. The right end of the string is tied to a suspended object of varying
mass, m, through a pulley. For a mass m1 of the object, a standing wave with one
loop is observed. For a mass m2 of the object, a standing wave with four loops is
observed. What is the ratio "m2 / m1 = ?"
2.
16
0.25
0.0625
Transcribed Image Text:The left end of a taut string of length L, is connected to a vibrator with a fixed frequency f. The right end of the string is tied to a suspended object of varying mass, m, through a pulley. For a mass m1 of the object, a standing wave with one loop is observed. For a mass m2 of the object, a standing wave with four loops is observed. What is the ratio "m2 / m1 = ?" 2. 16 0.25 0.0625
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