A m chain 100 m E hA hE G m # 20. If hA= 80.0 m, and the mass of the cart m= 100.0 kg, what is the total mechanical energy of the system at any point? 1225 J a. b. 46,000 J c. 78,400 J d. 240,000 J # 21. What is the magnitude of the velocity the cart could reach at point G if there is no friction? a. 10.0 m/s b. 22.4 m/s c. 39.6 m/s d. 56.0 m/s # 22. How much work was done by the chain lifting the roller coaster up to the top of the lift? a. 1225 J b. 46,000 J c. 78,400 J d. 240,000 J B C DET24 m hD F

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Chapter8: Conservation Of Energy
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Answer questions #20-22 based upon the roller coaster system in the diagram below. Assume
there is no friction:
A
m
E
B
D
m
hA
hE
C
hp
# 20. If hA = 80.0 m, and the mass of the cart m = 100.0 kg, what is the total mechanical energy
of the system at any point?
a.
1225 J
b.
46,000 J
c. 78,400 J
d. 240,000 J
# 21. What is the magnitude of the velocity the cart could reach at point G if there is no friction?
a. 10.0 m/s
b. 22.4 m/s
c. 39.6 m/s
d. 56.0 m/s
# 22. How much work was done by the chain lifting the roller coaster up to the top of the lift?
a. 1225 J
b. 46,000 J
c. 78,400 J
d. 240,000 J
100 m
EL
Transcribed Image Text:Answer questions #20-22 based upon the roller coaster system in the diagram below. Assume there is no friction: A m E B D m hA hE C hp # 20. If hA = 80.0 m, and the mass of the cart m = 100.0 kg, what is the total mechanical energy of the system at any point? a. 1225 J b. 46,000 J c. 78,400 J d. 240,000 J # 21. What is the magnitude of the velocity the cart could reach at point G if there is no friction? a. 10.0 m/s b. 22.4 m/s c. 39.6 m/s d. 56.0 m/s # 22. How much work was done by the chain lifting the roller coaster up to the top of the lift? a. 1225 J b. 46,000 J c. 78,400 J d. 240,000 J 100 m EL
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