Q1. There is trampoline on the ground, and connected to spring of spring constant, k, on...
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Q1. There is trampoline on the ground, and connected to spring of spring constant, k, on the bottom. You are holding a child of mass, M on a H tall building top (H is measured from the trampoline to the where you hold the child). a. Draw the carton and choose PE zero at your convenience to proceed each part below (10 points). b. Now you decide to drop the child onto the trampoline. Write a formula for initial total energy in terms of M, H and other symbols by choosing the top of the building as initial position. Is it KE or PEG or PES or any combination? (10 points) c. When the child touches the trampoline, the child has a velocity, V. Write a formula for final energy by choosing trampoline position as final position. Is it KE or PEG or PEs or any combination? (10 points) d. Calculate the velocity, V of the child if M= D kg and H=10.0 m by explaining energy transformation? (10 points) e. Next, the spring compress y distance because of child landing, calculate y by explaining the energy transformation if spring constant, k=1235 N/m. (10 points) D= 15 Q1. There is trampoline on the ground, and connected to spring of spring constant, k, on the bottom. You are holding a child of mass, M on a H tall building top (H is measured from the trampoline to the where you hold the child). a. Draw the carton and choose PE zero at your convenience to proceed each part below (10 points). b. Now you decide to drop the child onto the trampoline. Write a formula for initial total energy in terms of M, H and other symbols by choosing the top of the building as initial position. Is it KE or PEG or PES or any combination? (10 points) c. When the child touches the trampoline, the child has a velocity, V. Write a formula for final energy by choosing trampoline position as final position. Is it KE or PEG or PEs or any combination? (10 points) d. Calculate the velocity, V of the child if M= D kg and H=10.0 m by explaining energy transformation? (10 points) e. Next, the spring compress y distance because of child landing, calculate y by explaining the energy transformation if spring constant, k=1235 N/m. (10 points) D= 15
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