Suppose the ramp now has friction. The same block is projected up with the same initial speed vo and comes back down the ramp. On the axes provided below, sketch a graph of the velocity v as a function of time t for the motion of the block while it goes up and back down the ramp, arriving at the bottom of the ramp at time t,. Explicitly label any intercepts, asymptotes, maxima, or minima with numerical values or algebraic expressions, as appropriate.
Suppose the ramp now has friction. The same block is projected up with the same initial speed vo and comes back down the ramp. On the axes provided below, sketch a graph of the velocity v as a function of time t for the motion of the block while it goes up and back down the ramp, arriving at the bottom of the ramp at time t,. Explicitly label any intercepts, asymptotes, maxima, or minima with numerical values or algebraic expressions, as appropriate.
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
Transcribed Image Text:Suppose the ramp now has friction. The same block is projected up with the same initial speed vo and
comes back down the ramp. On the axes provided below, sketch a graph of the velocity v as a function of
time t for the motion of the block while it goes up and back down the ramp, arriving at the bottom of the
ramp at time t,. Explicitly label any intercepts, asymptotes, maxima, or minima with numerical values or
algebraic expressions, as appropriate.
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