A glass beaker containing a sample of water is in a calorimeter. The beaker has a...
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A glass beaker containing a sample of water is in a calorimeter. The beaker has a mass of 0.200 kg and the water has a mass of 1.45 kg. Both the beaker and water are at a temperature of 15.0C. You drop a piece of steel with a mass of 0.345 kg at 205C into it. After some time, the sizzling subsides and the system reaches an equilibrium temperature. (Make the reasonable assumptions that any steam produced condenses into liquid water during the process of equilibration and that the evaporation and condensation don't affect the final temperature.) What is the final equilibrium temperature of the system (in C)? If you don't account for the beaker, would you expect the equilibrium temperature to be higher or lower? higher O lower A glass beaker containing a sample of water is in a calorimeter. The beaker has a mass of 0.200 kg and the water has a mass of 1.45 kg. Both the beaker and water are at a temperature of 15.0C. You drop a piece of steel with a mass of 0.345 kg at 205C into it. After some time, the sizzling subsides and the system reaches an equilibrium temperature. (Make the reasonable assumptions that any steam produced condenses into liquid water during the process of equilibration and that the evaporation and condensation don't affect the final temperature.) What is the final equilibrium temperature of the system (in C)? If you don't account for the beaker, would you expect the equilibrium temperature to be higher or lower? higher O lower
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