A 0.150 kg block is placed on a light vertical spring (k = 5.00 ✕ 103 N/m) and pushed downward, compressing the spring 0.100 m. After the block is released, it leaves the spring and continues to travel upward. What height above the point of release will the block reach if air resistance is negligible?
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A 0.150 kg block is placed on a light vertical spring (k = 5.00 ✕ 103 N/m) and pushed downward, compressing the spring 0.100 m. After the block is released, it leaves the spring and continues to travel upward. What height above the point of release will the block reach if air resistance is negligible?
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- (b) A 1.5 kg box moves back and forth on a horizontal frictionless surface between two different springs, as shown below. The box is initially pressed against the stronger spring, compressing it 4.0 cm, and then is released from rest. (a) By how much will the box compress the weaker spring? (b) What is the maximum speed the box will reach? k = 32 N/cm ˇˇˇˇˇˇˇˇˇˇˇˇ k = 16 N/cm M Box Frictionless surface wwwA 250 gram block is dropped from rest at a height of 1.2m onto a relaxed vertical spring that has a spring constant of k =2.5 N/cm. The block continues downward, compressing the spring until it reaches its lowest point. At the lowest point, how much has the spring been compressed? Please answer in units of meters.A 120 g arrow is shot vertically from a bow whose effective spring constant is 430 N/m. If the bow is drawn 67.9 cm before releasing the arrow, to what height does the arrow rise?
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