A 6 Kg block is compressed against a spring at the bottom of the inclined plane as shown in the figure. A force of 6000 N was required to compress the spring over a distance of 6 cm. If the spring is released and the coefficient of friction is u = 0.4, •What is the velocity of the block after travelling up 22 cm? 30°

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Chapter1: Units, Trigonometry. And Vectors
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A 6 Kg block is compressed against a spring at the bottom of
the inclined plane as shown in the figure. A force of 6000 N was
required to compress the spring over a distance of 6 cm.
If the spring is released and the coefficient of friction is u = 0.4,
•What is the velocity of the block after travelling up 22 cm?
30°
Transcribed Image Text:A 6 Kg block is compressed against a spring at the bottom of the inclined plane as shown in the figure. A force of 6000 N was required to compress the spring over a distance of 6 cm. If the spring is released and the coefficient of friction is u = 0.4, •What is the velocity of the block after travelling up 22 cm? 30°
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