A student pushes the 1.00 kg block in the figure below against a horizontal spring, compressing it by 0.180 m. x = 0 Xmax I リ=0 k m y = 0 When released, the block travels across a horizontal surface and up an incline. Neglecting friction, find the block's maximum height (in m) if the spring constant is k - 485 N/m. (The acceleration of gravity is g- 9.80 m/s2.) HINT

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Chapter5: Energy
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Problem 39P: The launching mechanism of a toy gun consists of a spring of unknown spring constant, as shown in...
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A student pushes the 1.00 kg block in the figure below against a horizontal spring, compressing it by 0.180 m.
x = 0
Xmax !
リ=0
m
--------
リ=0
When released, the block travels across a horizontal surface and up an incline. Neglecting friction, find the block's maximum height (in m) if the spring constant is k = 485 N/m. (The acceleration of gravity is
g = 9.80 m/s2.)
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Transcribed Image Text:A student pushes the 1.00 kg block in the figure below against a horizontal spring, compressing it by 0.180 m. x = 0 Xmax ! リ=0 m -------- リ=0 When released, the block travels across a horizontal surface and up an incline. Neglecting friction, find the block's maximum height (in m) if the spring constant is k = 485 N/m. (The acceleration of gravity is g = 9.80 m/s2.) HINT Need Help? Read It Watch It
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