Q.A block placed on a rough horizontal surface is pulled by a horizontal force . Let be the force applied by the rough surface on the block. Plot a graph of versus .
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Start your 14-day free trial to unlock the full solution →Static friction rises linearly with applied force until it reaches its maximum value , then the block starts moving and kinetic friction (constant at ) takes over. The graph shows a linear rise, a peak, then a horizontal line at a lower level.
The force from the rough surface is friction, and friction behaves differently depending on whether the block is stationary or moving. Understanding this distinction is the key to sketching the graph.
When you first apply a small horizontal force , the block doesn't move. Why? Because static friction automatically adjusts itself to exactly cancel whatever force you apply, keeping the net force zero. This self-adjusting property continues until static friction reaches its maximum possible value, , where is the coefficient of static friction and is the normal force (equal to the block's weight on a horizontal surface).
Once exceeds , static friction can no longer hold the block in place. The block begins to slide, and the nature of friction changes: kinetic friction takes over. Kinetic friction has a fixed magnitude and doesn't depend on how hard you pull (as long as the block keeps moving). Typically, , so kinetic friction is weaker than the maximum static friction.
Let me walk through the regions of the graph:
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Static regime (): The block remains at rest. Static friction exactly balances the applied force, so . This gives a straight line through the origin with slope .
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Threshold (): Static friction reaches its maximum value. This is the peak of the graph, where . …
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