Why is the tension identical everywhere in a massless rope but grows toward your hand when the rope itself has mass?
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Tension at an imaginary slice
Cut the rope at , identify the Third Law pair across the cut, and define tension as the common magnitude of that pair.
Uniform tension in a massless rope
Set , combine the Second Law on rope and block with the Third Law to get , giving .
Massive rope dragging a block
Slice at , assign section masses and , use and a common acceleration to obtain .
Combined block-rope system as a check
Redo the same result from for the whole system, substituting into the right-section equation, and confirm the massless limit .