*107. ssm Two blocks are connected by a wire that has a mass per unit length of 8.50 x 10-ª kg/m. One block has a mass of 19.0 kg, and the other has a mass of 42.0 kg. These blocks are being pulled across a horizontal frictionless floor by a horizontal force P that is applied to the less massive block. A transverse wave travels on the wire between the blocks with a speed of 352 m/s (relative to the wire). The mass of the wire is negligible compared to the mass of the blocks. Find the mag- nitude of P.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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*107. ssm Two blocks are connected by a wire that has a mass per unit
length of 8.50 x 10-ª kg/m. One block has a mass of 19.0 kg, and the
other has a mass of 42.0 kg. These blocks are being pulled across a
horizontal frictionless floor by a horizontal force P that is applied to
the less massive block. A transverse wave travels on the wire between
the blocks with a speed of 352 m/s (relative to the wire). The mass of
the wire is negligible compared to the mass of the blocks. Find the mag-
nitude of P.
Transcribed Image Text:*107. ssm Two blocks are connected by a wire that has a mass per unit length of 8.50 x 10-ª kg/m. One block has a mass of 19.0 kg, and the other has a mass of 42.0 kg. These blocks are being pulled across a horizontal frictionless floor by a horizontal force P that is applied to the less massive block. A transverse wave travels on the wire between the blocks with a speed of 352 m/s (relative to the wire). The mass of the wire is negligible compared to the mass of the blocks. Find the mag- nitude of P.
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