show pulses A and B at time = 0 as they head toward each other at the same constant speed of 1 square per second. The string which is 16 squares long. at t = 3 s, 4 s, 5 s, and 6 s, show the position of pulse A in red and pulse B in blue. Using the principle of superposition, show the resultant displacement of the string in green
show pulses A and B at time = 0 as they head toward each other at the same constant speed of 1 square per second. The string which is 16 squares long. at t = 3 s, 4 s, 5 s, and 6 s, show the position of pulse A in red and pulse B in blue. Using the principle of superposition, show the resultant displacement of the string in green
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show pulses A and B at time = 0 as they head toward each other at the same constant speed of 1 square per second. The string
which is 16 squares long.
at t = 3 s, 4 s, 5 s, and 6 s, show the position of pulse A in red and pulse B in blue. Using the
principle of superposition, show the resultant displacement of the string in green
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