We can calculate the heat capacity (C) of the calorimeter by measuring the change in heat qcal and the temperature change of the calorimeter. For an object like a calorimeter that is made up of more than one substance, we can use the following equation that relates the heat change of the calorimeter (qcal) to the heat capacity of the calorimeter (C) and the change in temperature (∆T).  The relationship is q c a l = C × Δ T where the units of C are J ∘ C and the units of ∆T are ºC.   If the calorimeter undergoes a heat change (qcal) of 439.08 and the temperature of the calorimeter goes from 30.21 ºC to 36.15 ºC, what is the C of the calorimeter in J? Enter your answer with one decimal place (tenths place).

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A calorimeter is a well insulated container that can be used to measure heat changes in a process.  The heat capacity of a calorimeter can be determined by carrying out a process with a known amount of released heat.  If the calorimeter is well insulated, we can assume that the heat lost to the surroundings is zero.

We can calculate the heat capacity (C) of the calorimeter by measuring the change in heat qcal and the temperature change of the calorimeter. For an object like a calorimeter that is made up of more than one substance, we can use the following equation that relates the heat change of the calorimeter (qcal) to the heat capacity of the calorimeter (C) and the change in temperature (∆T).  The relationship is q c a l = C × Δ T where the units of C are J ∘ C and the units of ∆T are ºC.  

If the calorimeter undergoes a heat change (qcal) of 439.08 and the temperature of the calorimeter goes from 30.21 ºC to 36.15 ºC, what is the C of the calorimeter in J?

Enter your answer with one decimal place (tenths place).

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