18. You perform an experiment involving the change of gravitational potential energy of a falling mass into thermal energy. (The falling mass caused the stirrer to spin, which heated the water) string. stirrer m a. The mass m is 5.19 kg, and 1.35 kg of water are in the beaker. If the mass falls 4.50 m, what is the change in gravitational potential energy. b. Assuming this is 100% efficient, how much does the water's temperature change? c. How far would a 40 kg mass have to fall to boil 1.35 kg of water that was originally 37 °C?

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18. You perform an experiment involving the change of gravitational potential
energy of a falling mass into thermal energy. (The falling mass caused the stirrer to
spin, which heated the water)
string.
stirrer
m
a. The mass m is 5.19 kg, and 1.35 kg of water are in the beaker. If the mass falls
4.50 m, what is the change in gravitational potential energy.
b. Assuming this is 100% efficient, how much does the water's tempe
change?
ure
c. How far would a 40 kg mass have to fall to boil 1.35 kg of water that was
originally 37 °C?
9.
ét
MacBook PrO
esc
Search or enter website name
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2
5
Q
W
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Y
%A4
#* 3
Transcribed Image Text:18. You perform an experiment involving the change of gravitational potential energy of a falling mass into thermal energy. (The falling mass caused the stirrer to spin, which heated the water) string. stirrer m a. The mass m is 5.19 kg, and 1.35 kg of water are in the beaker. If the mass falls 4.50 m, what is the change in gravitational potential energy. b. Assuming this is 100% efficient, how much does the water's tempe change? ure c. How far would a 40 kg mass have to fall to boil 1.35 kg of water that was originally 37 °C? 9. ét MacBook PrO esc Search or enter website name % 2 5 Q W R Y %A4 #* 3
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