4. A refrigerator is used to cool 4 litres of soft drink from room temperature (23 °C) to 4 °C. If the density of the soft drink is 1015 kg/m³ (1 litre = 0.001 m³), how much heat must be removed if the specific heat of the soft drink is 4350 J/kg
4. A refrigerator is used to cool 4 litres of soft drink from room temperature (23 °C) to 4 °C. If the density of the soft drink is 1015 kg/m³ (1 litre = 0.001 m³), how much heat must be removed if the specific heat of the soft drink is 4350 J/kg
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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4. A refrigerator is used to cool 4 litres of soft drink from
room temperature (23 °C) to 4 °C. If the density of the soft
drink is 1015 kg/m³ (1 litre = 0.001 m³), how much heat must
be removed if the specific heat of the soft drink is 4350 J/kg
°C
5. The chemical reaction presented below is not balanced.
Balance it and calculate and for this reaction at and 1 atm and
25 °C. (values for standard entropies and enthalpies are given
in the text book)
CO(g) + H2(g)
CH,OH(I)
6. An engine operating in a circle absorbs 13 000 J of from the
heat source and emit 8 000 J to a cold reservoir. Calculate
(a) Work done by the engine
(b) Efficiency of the engine
Add a caption...
> Status (Custom)"
Transcribed Image Text:14:26 C
4. A refrigerator is used to cool 4 litres of soft drink from
room temperature (23 °C) to 4 °C. If the density of the soft
drink is 1015 kg/m³ (1 litre = 0.001 m³), how much heat must
be removed if the specific heat of the soft drink is 4350 J/kg
°C
5. The chemical reaction presented below is not balanced.
Balance it and calculate and for this reaction at and 1 atm and
25 °C. (values for standard entropies and enthalpies are given
in the text book)
CO(g) + H2(g)
CH,OH(I)
6. An engine operating in a circle absorbs 13 000 J of from the
heat source and emit 8 000 J to a cold reservoir. Calculate
(a) Work done by the engine
(b) Efficiency of the engine
Add a caption...
> Status (Custom)
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