The mass of a ship before launch is 55,000 metric tons (ton metric|]. The ship is launched down a ramp and drops a total of 10 vertical meters m before coming to rest in a lock containing 75,000 cubic meters m of fresh water. The specific heat of water is 4200 joules per kilogram degree Celsius kg C Assume all energy is transferred from the ship to the water. Determine the change in temperature of the water in degrees Celsius C.

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Chapter1: Units, Trigonometry. And Vectors
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The mass of a ship before launch is 55,000 metric tons [ton metric|].
The ship is launched down a ramp and drops a total of 10 vertical meters m before
coming to rest in a lock containing 75,000 cubic meters m of fresh water.
The specific heat of water is 4200 joules per kilogram degree Celsius
Assume all energy is transferred from the ship to the water.
Determine the change in temperature of the water in degrees Celsius [°C].
Transcribed Image Text:The mass of a ship before launch is 55,000 metric tons [ton metric|]. The ship is launched down a ramp and drops a total of 10 vertical meters m before coming to rest in a lock containing 75,000 cubic meters m of fresh water. The specific heat of water is 4200 joules per kilogram degree Celsius Assume all energy is transferred from the ship to the water. Determine the change in temperature of the water in degrees Celsius [°C].
P Determine the energy (@) vequived to heat
a cup of coffee
in units of joules [J].
R Q = m Cp AT
AT= Tr - Ti
OM: 0.7 kg
Cp = 4.18 Te - 85°C
Tis 40°C
m= 0.7 yal 1000q = 700g
AT: Te- Ti = 95°C - 40°C = 45°C
E
Q= 131 070 J
Transcribed Image Text:P Determine the energy (@) vequived to heat a cup of coffee in units of joules [J]. R Q = m Cp AT AT= Tr - Ti OM: 0.7 kg Cp = 4.18 Te - 85°C Tis 40°C m= 0.7 yal 1000q = 700g AT: Te- Ti = 95°C - 40°C = 45°C E Q= 131 070 J
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