In a 30°-rough incline, a 1.25 kg block is initially at rest beside a spring that is compressed by 24 cm as shown in the figure below. The spring has a spring constant of 180 N/m and the coefficient of sliding friction between the incline and the block is 0.23. When the spring is released, how far up the incline (with respect to its initial position) will the block slide before sliding back? ww 30⁰

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Chapter5: Energy
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Problem 92AP: Two blocks, A and B (with mass 50.0 kg and 1.00 102 kg, respectively), are connected by a string,...
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In a 30°-rough incline, a 1.25 kg block is initially at rest beside a spring that is compressed by 24 cm as shown in the figure below. The spring has a spring constant of 180 N/m and the coefficient of sliding friction between the incline and the block is 0.23. When the spring is released, how
far up the incline (with respect to its initial position) will the block slide before sliding back?
ww
30⁰
Transcribed Image Text:In a 30°-rough incline, a 1.25 kg block is initially at rest beside a spring that is compressed by 24 cm as shown in the figure below. The spring has a spring constant of 180 N/m and the coefficient of sliding friction between the incline and the block is 0.23. When the spring is released, how far up the incline (with respect to its initial position) will the block slide before sliding back? ww 30⁰
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