In Concept Simulation 17.1 you can explore how two pulses, traveling in opposite directions, combine to form a resultant pulse. Two pulses are traveling toward each other, each havin a speed of 1 cm/s. At t = 0 s, their positions are shown in the drawing. Choose the figure corresponding to the position of the pulses at 1 s, 2 s, 3 s, 4 s.
In Concept Simulation 17.1 you can explore how two pulses, traveling in opposite directions, combine to form a resultant pulse. Two pulses are traveling toward each other, each havin a speed of 1 cm/s. At t = 0 s, their positions are shown in the drawing. Choose the figure corresponding to the position of the pulses at 1 s, 2 s, 3 s, 4 s.
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![In Concept Simulation 17.1 you can explore how two pulses, traveling in opposite directions, combine to form a resultant pulse. Two pulses are traveling toward each other, each having
a speed of 1 cm/s. At t = 0 s, their positions are shown in the drawing. Choose the figure corresponding to the position of the pulses at 1 s, 2 s, 3 s, 4 s.
1 cm/s
1 cm/s
2
4
8
10
12
Distance, cm
1 s
4 v
2 s
1
3 s
2 v
4 s
3 v](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbe40b72e-e941-4e82-be99-75d6baae8d50%2F4dec5e45-c2f0-4330-854e-5c18e0b5edd4%2Fzi1ztpj_processed.png&w=3840&q=75)
Transcribed Image Text:In Concept Simulation 17.1 you can explore how two pulses, traveling in opposite directions, combine to form a resultant pulse. Two pulses are traveling toward each other, each having
a speed of 1 cm/s. At t = 0 s, their positions are shown in the drawing. Choose the figure corresponding to the position of the pulses at 1 s, 2 s, 3 s, 4 s.
1 cm/s
1 cm/s
2
4
8
10
12
Distance, cm
1 s
4 v
2 s
1
3 s
2 v
4 s
3 v
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