A 48.0 g sample of glass, which has a specific heat capacity of 0.670 J.g -¹.0C-¹, is dropped into an insulated container containing 200.0 g of water at 15.0 °C and a constant pressure of 1 atm. The initial temperature of the glass is 86.5 °C. Assuming no heat is absorbed from or by the container, or the surroundings, calculate the equilibrium temperature of the water. Be sure your answer has the correct number of significant digits. °C 0 10 x S

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Chapter6: Thermochemisty
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Problem 6.71QP: When steam condenses to liquid water, 2.26 kJ of heat is released per gram. The heat from 168 g of...
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A 48.0 g sample of glass, which has a specific heat capacity of 0.670 J∙g¯¹·°C¯¹, is dropped into an insulated container containing 200.0 g of water at 15.0 °C
and a constant pressure of 1 atm. The initial temperature of the glass is 86.5 °C.
Assuming no heat is absorbed from or by the container, or the surroundings, calculate the equilibrium temperature of the water. Be sure your answer has the
correct number of significant digits.
°C
0x10
x
Transcribed Image Text:A 48.0 g sample of glass, which has a specific heat capacity of 0.670 J∙g¯¹·°C¯¹, is dropped into an insulated container containing 200.0 g of water at 15.0 °C and a constant pressure of 1 atm. The initial temperature of the glass is 86.5 °C. Assuming no heat is absorbed from or by the container, or the surroundings, calculate the equilibrium temperature of the water. Be sure your answer has the correct number of significant digits. °C 0x10 x
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