A 53.6 g sample of glass, which has a specific heat capacity of 0.670 J-g¹C¹, is put into a calorimeter (see sketch at right) that contains 150.0 g of water. The temperature of the water starts off at 15.0 °C. When the temperature of the water stops changing it's 19.1 °C. The pressure remains constant at 1 atm. Calculate the initial temperature of the glass sample. Be sure your answer is rounded to 2 significant digits. °C X insulated container water sample a calorimeter

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A 53.6 g sample of glass, which has a specific heat capacity of 0.670 J-g¹.C, is put into a calorimeter (see sketch at right)
that contains 150.0 g of water. The temperature of the water starts off at 15.0 °C. When the temperature of the water stops
changing it's 19.1 °C. The pressure remains constant at 1 atm.
Calculate the initial temperature of the glass sample. Be sure your answer is rounded to 2 significant digits.
°C
x10
X
5
thermometer.
insulated
container
water
sample
a calorimeter
Transcribed Image Text:A 53.6 g sample of glass, which has a specific heat capacity of 0.670 J-g¹.C, is put into a calorimeter (see sketch at right) that contains 150.0 g of water. The temperature of the water starts off at 15.0 °C. When the temperature of the water stops changing it's 19.1 °C. The pressure remains constant at 1 atm. Calculate the initial temperature of the glass sample. Be sure your answer is rounded to 2 significant digits. °C x10 X 5 thermometer. insulated container water sample a calorimeter
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