A jar of tea is placed in sunlight until it reaches an equilibrium temnperature of 32°C. In an attempt to cool the liquid, which has a mass of 196 g, 126 g of ice at 0.0°C is added. At the time at which the temperature of the tea is 26.5°C, find the mass of the remaining ice in the jar. is 4186 J/kg -° C. Assume the specific heat capacity of the tea to be that of pure liquid The specific heat of water

University Physics Volume 2
18th Edition
ISBN:9781938168161
Author:OpenStax
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Chapter1: Temperature And Heat
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Problem 20CQ: How does the latent heat of fusion of water help slow the decrease of air temperatures, perhaps...
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A jar of tea is placed in sunlight until it
reaches an equilibrium temperature of 32°C.
In an attempt to cool the liquid, which has a
mass of 196 g, 126 g of ice at 0.0°C is added.
At the time at which the temperature of the
tea is 26.5°C, find the mass of the remaining
ice in the jar. The specific heat of water
is 4186 J/kg -° C. Assume the specific heat
capacity of the tea to be that of pure liquid
water.
Answer in units of g.
Transcribed Image Text:A jar of tea is placed in sunlight until it reaches an equilibrium temperature of 32°C. In an attempt to cool the liquid, which has a mass of 196 g, 126 g of ice at 0.0°C is added. At the time at which the temperature of the tea is 26.5°C, find the mass of the remaining ice in the jar. The specific heat of water is 4186 J/kg -° C. Assume the specific heat capacity of the tea to be that of pure liquid water. Answer in units of g.
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OpenStax