In an experiment to measure the heat released by the combustion of a sample of nutrient, the compound was burned in a calorimeter and the temperature rose by 3 .22 ° C (the same as 3.22 K, because degrees Celsius are the same size as kel vins). When a current of 1.23 A from a 12.0 V sourceflows through a heater in the same calorimeter for 156 s, the temperature rose by 4.47 °c (which can be interpreted as 4.47 K). What is the heat output of the combustion reaction?
In an experiment to measure the heat released by the combustion of a sample of nutrient, the compound was burned in a calorimeter and the temperature rose by 3 .22 ° C (the same as 3.22 K, because degrees Celsius are the same size as kel vins). When a current of 1.23 A from a 12.0 V sourceflows through a heater in the same calorimeter for 156 s, the temperature rose by 4.47 °c (which can be interpreted as 4.47 K). What is the heat output of the combustion reaction?
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In an experiment to measure the heat released by the combustion of a sample of nutrient, the compound was burned in a calorimeter and the temperature rose by 3 .22 ° C (the same as 3.22 K, because degrees Celsius are the same size as kel vins). When a current of 1.23 A from a 12.0 V source
flows through a heater in the same calorimeter for 156 s, the temperature rose by 4.47 °c (which can be interpreted as 4.47 K). What is the heat output of the combustion reaction?
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