SORU 4) An object with a mass of 0.5 kg is released at a distance of...
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SORU 4) An object with a mass of 0.5 kg is released at a distance of 2 m, the spring coefficient k = 100 N / m, and the object is known to rebound on the road along the same direction after impact. a) What is the speed of the object at the moment before it hits the spring? b) Find the maximum compression and maximum spring force in the spring.. c) Find the rebound height if e = 0.5. (Assume that the spring behaves linearly during deformation, when the object leaves the spring, the spring regains its starting length (L) and energy is conserved during compression..) v (=0) 1 The object is 2 m above the arc and is at rest. 2 The object is about to hit the spring 3 It is the moment when the body compressesthe spring by ô. ve( 0) 2 m 4 This is the moment when the spring is most compressed, the object is still. 5It is the moment when the object loses contact with the spring. 6 The object becomes motionless at a distance h from the top of the arc as a result of the recoil from the spring. MWW. WWW WWW WWW SORU 4) An object with a mass of 0.5 kg is released at a distance of 2 m, the spring coefficient k = 100 N / m, and the object is known to rebound on the road along the same direction after impact. a) What is the speed of the object at the moment before it hits the spring? b) Find the maximum compression and maximum spring force in the spring.. c) Find the rebound height if e = 0.5. (Assume that the spring behaves linearly during deformation, when the object leaves the spring, the spring regains its starting length (L) and energy is conserved during compression..) v (=0) 1 The object is 2 m above the arc and is at rest. 2 The object is about to hit the spring 3 It is the moment when the body compressesthe spring by ô. ve( 0) 2 m 4 This is the moment when the spring is most compressed, the object is still. 5It is the moment when the object loses contact with the spring. 6 The object becomes motionless at a distance h from the top of the arc as a result of the recoil from the spring. MWW. WWW WWW WWW
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College Physics
ISBN: 978-0495113690
7th Edition
Authors: Raymond A. Serway, Jerry S. Faughn, Chris Vuille, Charles A. Bennett
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