Several ice cubes (ρi = 0.9167 g/cm3) of total volume Vi = 205 cm3 and temperature 273.15 K (0.000 °C) are put into a thermos containing Vt = 680 cm3 of tea at a temperature of 313.15 K, completely filling the thermos. The lid is then put on the thermos to close it. Assume that the density and the specific heat of the tea is the same as it is for fresh water (ρw = 1.00 g/cm3, c = 4186 J/kgK).   a. Calculate the equilibrium temperature TE in K of the final mixture of tea and water.  b.  Calculate the magnitude of the total heat transferred QT in J from the tea to the ice cubes.

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ISBN:9781133611097
Author:Steven S. Zumdahl
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Chapter6: Thermochemistry
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Several ice cubes (ρi = 0.9167 g/cm3) of total volume Vi = 205 cm3 and temperature 273.15 K (0.000 °C) are put into a thermos containing Vt = 680 cm3 of tea at a temperature of 313.15 K, completely filling the thermos. The lid is then put on the thermos to close it. Assume that the density and the specific heat of the tea is the same as it is for fresh water (ρw = 1.00 g/cm3c = 4186 J/kgK).

 

a. Calculate the equilibrium temperature TE in K of the final mixture of tea and water. 

b.  Calculate the magnitude of the total heat transferred QT in J from the tea to the ice cubes. 

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