Consider the image where a mass initially slides down a ramp with friction to bounce elastically off the spring. If the following parameters are known: vo 1.3 m/s, h₁ =1.20 m, 0=55° and με =0.19. Calculate the height the mass returns to after one bounce. Please report your answer in meters to 2 decimal places. HINT: You can simplify the problem by ignoring the work done by friction during the collision with the spring. vo v=0 με # 0 h₂ =? h₁ Ꮎ Conservation of energy
Consider the image where a mass initially slides down a ramp with friction to bounce elastically off the spring. If the following parameters are known: vo 1.3 m/s, h₁ =1.20 m, 0=55° and με =0.19. Calculate the height the mass returns to after one bounce. Please report your answer in meters to 2 decimal places. HINT: You can simplify the problem by ignoring the work done by friction during the collision with the spring. vo v=0 με # 0 h₂ =? h₁ Ꮎ Conservation of energy
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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
Transcribed Image Text:Consider the image where a mass initially
slides down a ramp with friction to
bounce elastically off the spring.
If the following parameters are known:
vo 1.3 m/s, h₁ =1.20 m, 0=55° and
με =0.19.
Calculate the height the mass returns to
after one bounce.
Please report your answer in meters to 2
decimal places.
HINT: You can simplify the problem by
ignoring the work done by friction during
the collision with the spring.
vo
v=0
με # 0
h₂ =?
h₁
Ꮎ
Conservation of energy
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