Question 15 Nagyung poured 300 g water (initial temperature is 30°C) into a calorimeter at constant pressure condition. After several minutes, she added 150 g of water (the initial temperature was 90°C). She observed that the temperature of the system became constant at 49°C. Calculate the calorimeter constant. A 99.1 J/°C B 2.08 x 103 J/°C © 1.56 x 103 J/°c 45.9 J/°C

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D) No because no heat will escape from the paper cups
Question 15
Nagyung poured 300 g water (initial temperature is 30°C) into a calorimeter at constant pressure condition. After several
minutes, she added 150 g of water (the initial temperature was 90°C). She observed that the temperature of the system
became constant at 49°C. Calculate the calorimeter constant.
A
99.1 J/°C
B 2.08 x 103 J/°C
1.56 x 103 J/°C
45.9 J/°C
Question 16
Chaeyoung pours 300 g of coffee, initially in a pot at 70.0°C, into a 120-g aluminum cup initially at 20.0°C. What is the final
temperature of the coffee and aluminum cup? Assume that coffee has the same specific heat capacity as water and that no
heat is exchanged with the surroundings. The specific heat capacity of Al is 0.910 J/g C.
Transcribed Image Text:D) No because no heat will escape from the paper cups Question 15 Nagyung poured 300 g water (initial temperature is 30°C) into a calorimeter at constant pressure condition. After several minutes, she added 150 g of water (the initial temperature was 90°C). She observed that the temperature of the system became constant at 49°C. Calculate the calorimeter constant. A 99.1 J/°C B 2.08 x 103 J/°C 1.56 x 103 J/°C 45.9 J/°C Question 16 Chaeyoung pours 300 g of coffee, initially in a pot at 70.0°C, into a 120-g aluminum cup initially at 20.0°C. What is the final temperature of the coffee and aluminum cup? Assume that coffee has the same specific heat capacity as water and that no heat is exchanged with the surroundings. The specific heat capacity of Al is 0.910 J/g C.
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