A chemical reaction takes place inside a flask submerged in a water bath. The water bath contains 4.80 kg of water at 33.0 °C. During the reaction 98.4 kJ of heat flows out of the flask and into the bath. -1-1 Calculate the new temperature of the water bath. You can assume the specific heat capacity of water under these conditions is 4.18 J-gK . Round your answer to 3 significant digits.

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A chemical reaction takes place inside a flask submerged in a water bath. The water bath contains 4.80 kg of water at 33.0 °C. During the
reaction 98.4 kJ of heat flows out of the flask and into the bath.
-1
-1
Calculate the new temperature of the water bath. You can assume the specific heat capacity of water under these conditions is 4.18 J-gK
. Round your answer to 3 significant digits.
Transcribed Image Text:A chemical reaction takes place inside a flask submerged in a water bath. The water bath contains 4.80 kg of water at 33.0 °C. During the reaction 98.4 kJ of heat flows out of the flask and into the bath. -1 -1 Calculate the new temperature of the water bath. You can assume the specific heat capacity of water under these conditions is 4.18 J-gK . Round your answer to 3 significant digits.
Expert Solution
Step 1

Applying formula 

Q = m c dT 

where Q = heat of the reaction 

m = mass of water, C = heat capacity of water 

dT = T2-T1 

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