Part A Two substances, A and B, initially at different temperatures, come into contact and reach thermal equilibrium. The mass of substance A is 6.13 g and its initial temperature is 20.1 °C The mass of substance B is 25.8 g and its initial temperature is 52.3 °C. The final temperature of both substances at thermal equilibrium is 46.0 °C If the specific heat capacity of substance B is 1.17 Jg¬l°C-1, what is the specific heat capacity of substance A? Express your answer using two significant figures. να ΑΣφ ? C, = Jg-1 °C-1 Submit Request Answer

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Part A
Two substances, A and B, initially at different temperatures,
come into contact and reach thermal equilibrium. The mass of
substance A is 6.13 g and its initial temperature is 20.1 °C.
The mass of substance B is 25.8 g and its initial temperature is
52.3 °C. The final temperature of both substances at thermal
equilibrium is 46.0 °C.
If the specific heat capacity of substance B is 1.17 J g-1 °C-1,what is the specific heat capacity of substance A?
Express your answer using two significant figures.
Cs =
Jg-1°C-1
Submit
Request Answer
Transcribed Image Text:Part A Two substances, A and B, initially at different temperatures, come into contact and reach thermal equilibrium. The mass of substance A is 6.13 g and its initial temperature is 20.1 °C. The mass of substance B is 25.8 g and its initial temperature is 52.3 °C. The final temperature of both substances at thermal equilibrium is 46.0 °C. If the specific heat capacity of substance B is 1.17 J g-1 °C-1,what is the specific heat capacity of substance A? Express your answer using two significant figures. Cs = Jg-1°C-1 Submit Request Answer
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