Figure 3 shows a 3.0-kg block that starts from rest at the top of a plane inclined 0-30° above the horizontal, slides 2.0 m to the bottom of the plane, and takes 1.5 s. Assuming that there is friction between the block and the surface of the incline, find the value of the coefficient of friction between the block and the incline.

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Figure 3 shows a 3.0-kg block that starts from
rest at the top of a plane inclined 0-30° above
the horizontal, slides 2.0 m to the bottom of
the plane, and takes 1.5 s. Assuming that
there is friction between the block and the
surface of the incline, find the value of the
coefficient of friction between the block and
the incline.
Transcribed Image Text:Figure 3 shows a 3.0-kg block that starts from rest at the top of a plane inclined 0-30° above the horizontal, slides 2.0 m to the bottom of the plane, and takes 1.5 s. Assuming that there is friction between the block and the surface of the incline, find the value of the coefficient of friction between the block and the incline.
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