During a picnic on a hot summer day, the only available drinks were those at the ambient temperature of 90°F. In an effort to cool a 1 2-fluid-oz drink in a can, which is 5 in high and has a diameter of 2.5 in. a person grabs the can and starts shaking it in the iced page 311 water of the chest at 32°F. The temperature of the drink can be assumed to be uniform at all times, and the heat transfer coefficient between the iced water and the aluminum can is 30 Bta1rfi2°F. Using the properties of water for the drink, estimate how long it vi11 take for the canned drink to cool to 40°F. Solve this problem using lumped system analysis. Is the lumped system analysis applicable to this problem? Why?
During a picnic on a hot summer day, the only available drinks were those at the ambient temperature of 90°F. In an effort to cool a 1 2-fluid-oz drink in a can, which is 5 in high and has a diameter of 2.5 in. a person grabs the can and starts shaking it in the iced page 311 water of the chest at 32°F. The temperature of the drink can be assumed to be uniform at all times, and the heat transfer coefficient between the iced water and the aluminum can is 30 Bta1rfi2°F. Using the properties of water for the drink, estimate how long it vi11 take for the canned drink to cool to 40°F. Solve this problem using lumped system analysis. Is the lumped system analysis applicable to this problem? Why?
During a picnic on a hot summer day, the only available drinks were those at the ambient temperature of 90°F. In an effort to cool a 1 2-fluid-oz drink in a can, which is 5 in high and has a diameter of 2.5 in. a person grabs the can and starts shaking it in the iced page 311 water of the chest at 32°F. The temperature of the drink can be assumed to be uniform at all times, and the heat transfer coefficient between the iced water and the aluminum can is 30 Bta1rfi2°F. Using the properties of water for the drink, estimate how long it vi11 take for the canned drink to cool to 40°F. Solve this problem using lumped system analysis. Is the lumped system analysis applicable to this problem? Why?
Note:
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Question1:
If the following container is 0.6m high, 1.2m wide and half full with water, determine the pressure acting at points A, B, and C if ax=2.6ms^-2.
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