m2 m h=7.0m ☐ Figure 1: Diagram for Problem 15 15) During a test investigation, a 40-gram bullet is fired towards a stationary block of 1.0-kg mass causing a perfectly in-elastic collision. After the collision, the block-bullet system slides up a smooth ramp, eventually coming to rest at an elevation of 7.0 meters. Calculate the speed of the bullet. Must show all steps including the equations being used.

Glencoe Physics: Principles and Problems, Student Edition
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ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter11: Energy And Its Conservation
Section: Chapter Questions
Problem 101A
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m2
m
h=7.0m
☐
Figure 1: Diagram for Problem 15
15) During a test investigation, a 40-gram bullet is fired towards a stationary block of 1.0-kg
mass causing a perfectly in-elastic collision. After the collision, the block-bullet system slides
up a smooth ramp, eventually coming to rest at an elevation of 7.0 meters. Calculate the
speed of the bullet. Must show all steps including the equations being used.
Transcribed Image Text:m2 m h=7.0m ☐ Figure 1: Diagram for Problem 15 15) During a test investigation, a 40-gram bullet is fired towards a stationary block of 1.0-kg mass causing a perfectly in-elastic collision. After the collision, the block-bullet system slides up a smooth ramp, eventually coming to rest at an elevation of 7.0 meters. Calculate the speed of the bullet. Must show all steps including the equations being used.
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