Problem 3. Consider two pumpkins being used as a decoration in front of a home. The homeowner decides to attach a frictionless pulley onto a balcony with a light string passing over the pulley. One side of the string is connected to the first pumpkin, Pumpkin A. Pumpkin A has a mass of 13.0 lbs and dangles 11.0 feet over the ground. Pumpkin B is connected to the other end of the string and anchors the system initially in place with a mass of 14.5 lbs. Later, a curious raccoon notices the hanging pumpkin and decides to jump on it, removing the system from its initial equilibrium. With the raccoon now sitting on Pumpkin A and adding to its total weight, the system begins to move with the hanging pumpkin now moving towards the ground level while Pumpkin B is now rising straight up(2A-111). (2A-111)(a) If the speed of Pumpkin A at the very moment before it hits the ground is 5.00 m/s, find the mass of the raccoon. (2A-111)(b) What are the velocities of Pumpkin A (with the raccoon still riding) and Pumpkin B at the halfway point of their up-down travel distance?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter7: Conservation Of Energy
Section: Chapter Questions
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Problem 3. Consider two pumpkins being used as a decoration in
front of a home. The homeowner decides to attach a frictionless
pulley onto a balcony with a light string passing over the pulley. One
side of the string is connected to the first pumpkin, Pumpkin A.
Pumpkin A has a mass of 13.0 lbs and dangles 11.0 feet over the
ground. Pumpkin B is connected to the other end of the string and
anchors the system initially in place with a mass of 14.5 lbs.
Later, a curious raccoon notices the hanging pumpkin and decides to
jump on it, removing the system from its initial equilibrium. With
the raccoon now sitting on Pumpkin A and adding to its total
weight, the system begins to move with the hanging pumpkin now
moving towards the ground level while Pumpkin B is now rising
straight up(2A-111).
(2A-111)(a) If the speed of Pumpkin A at the very moment before it
hits the ground is 5.00 m/s, find the mass of the raccoon.
(2A-111)(b) What are the velocities of Pumpkin A (with the raccoon
still riding) and Pumpkin B at the halfway point of their up-down
travel distance?
1 ft = 0.3048 m
1 kg = 2.2 lb
Transcribed Image Text:4 Problem 3. Consider two pumpkins being used as a decoration in front of a home. The homeowner decides to attach a frictionless pulley onto a balcony with a light string passing over the pulley. One side of the string is connected to the first pumpkin, Pumpkin A. Pumpkin A has a mass of 13.0 lbs and dangles 11.0 feet over the ground. Pumpkin B is connected to the other end of the string and anchors the system initially in place with a mass of 14.5 lbs. Later, a curious raccoon notices the hanging pumpkin and decides to jump on it, removing the system from its initial equilibrium. With the raccoon now sitting on Pumpkin A and adding to its total weight, the system begins to move with the hanging pumpkin now moving towards the ground level while Pumpkin B is now rising straight up(2A-111). (2A-111)(a) If the speed of Pumpkin A at the very moment before it hits the ground is 5.00 m/s, find the mass of the raccoon. (2A-111)(b) What are the velocities of Pumpkin A (with the raccoon still riding) and Pumpkin B at the halfway point of their up-down travel distance? 1 ft = 0.3048 m 1 kg = 2.2 lb
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