A small block of mass m starts from rest and slides down a frictionless ramp of...
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A small block of mass m starts from rest and slides down a frictionless ramp of height h before hitting a spring of spring constant k placed on a horizontal, level surface. The maximum compression of the spring before the block is bounced back is Ax. The velocity of the block on the horizontal surface was v. Which of the following statements are true? (Select all that are true.) Block slides down a frictionless ramp Pick all of the correct answers If the block starts from a height of 4h, then the maximum compression of the spring is 2Ax. When the block bounces back from the spring, it will not reach the same height where it started. Let me take a look at the instructions. If the block were to start from a height of 2h, then the velocity of the block when it reaches the horizontal surface would be 2v. If the block were to start from a height of h, its velocity on the horizontal surface would be v. None of the listed options are correct. After hitting the spring, the block is bounced back up the ramp. The maximum compression of the spring is Ax = 0.03m, and the spring constant is k = 800N/m. What is the velocity of the block when it first reaches a height of 0.1m above the ground on the ramp? The mass of the block is m = 0.2kg, take g = 9.8m/s². h Block bouncing back from spring A small block of mass m starts from rest and slides down a frictionless ramp of height h before hitting a spring of spring constant k placed on a horizontal, level surface. The maximum compression of the spring before the block is bounced back is Ax. The velocity of the block on the horizontal surface was v. Which of the following statements are true? (Select all that are true.) Block slides down a frictionless ramp Pick all of the correct answers If the block starts from a height of 4h, then the maximum compression of the spring is 2Ax. When the block bounces back from the spring, it will not reach the same height where it started. Let me take a look at the instructions. If the block were to start from a height of 2h, then the velocity of the block when it reaches the horizontal surface would be 2v. If the block were to start from a height of h, its velocity on the horizontal surface would be v. None of the listed options are correct. After hitting the spring, the block is bounced back up the ramp. The maximum compression of the spring is Ax = 0.03m, and the spring constant is k = 800N/m. What is the velocity of the block when it first reaches a height of 0.1m above the ground on the ramp? The mass of the block is m = 0.2kg, take g = 9.8m/s². h Block bouncing back from spring
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Fundamentals of Ethics for Scientists and Engineers
ISBN: 978-0195134889
1st Edition
Authors: Edmund G. Seebauer, Robert L. Barry
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