2) A force of 12.0N is applied to a 32.5g wooden block resting against a spring causing it to compress by 13cm. The spring and block are at the base of a frictionless 30° incline such as depicted in the diagram below.

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2) A force of 12.0N is applied to a 32.5g wooden block resting against a
spring causing it to compress by 13cm. The spring and block are at the
base of a frictionless 30° incline such as depicted in the diagram below.
Transcribed Image Text:2) A force of 12.0N is applied to a 32.5g wooden block resting against a spring causing it to compress by 13cm. The spring and block are at the base of a frictionless 30° incline such as depicted in the diagram below.
(a) Determine how high the block slides up the incline when the 12N force is removed.
(b) calculate how high the block slides up the incline if the coefficient of friction between the
incline and the block is 0.1 (you may continue to assume there is no friction between the
block and the horizontal surface)
Transcribed Image Text:(a) Determine how high the block slides up the incline when the 12N force is removed. (b) calculate how high the block slides up the incline if the coefficient of friction between the incline and the block is 0.1 (you may continue to assume there is no friction between the block and the horizontal surface)
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