Figure 1 is a snapshot graph at t = 0 s of two waves approaching each other at 1.0 m/s. Draw six
snapshot graphs, stacked vertically, showing the string at 1 s intervals from t = 1 s to t = 6 s.

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Write the given value using a suitable variable.
Here v signifies wave velocity, Determine the distance covered by wave using the kinematic equation.
Here d signifies distance, and t signifies time. Determine the distance for 1 s time interval.
For two-wave superimposition, the particle displacement at any instantaneous time will be equal to their displacement vector sum. When displacements are opposite to each other, then the result will be the difference of their magnitude.
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