Calorimetry set, calorimeter, thermometer with rod

Código: EQ053K2A

EQ053K2A.jpg

Função

Intended for experimental study, physics laboratory and carrying out physics experiments on: Physics. Thermodynamics, Calorimetry. The water equivalent and heat capacity of a calorimeter. What is a calorimeter for? What is the water equivalent of a calorimeter? What is heat? Energy balance, principle of heat exchange. Measuring the final temperature, thermal equilibrium temperature. Determining the water equivalent of the calorimeter. Determining the heat capacity of the calorimeter. Specific heat, mass heat capacity, of a solid. Specific heat. Measuring the final temperature, thermal equilibrium temperature. Using conservation of energy, principle of heat exchange. Determining the specific heat of copper. Specific heat, mass heat capacity, of different solids. Latent heat of fusion of ice. Latent heat. Using the principle of conservation of energy, principle of heat exchange. Measuring the temperature and determining the mass of heated water. Measuring the final equilibrium temperature. Determining, by difference, the mass of ice. Determining the latent heat of fusion of ice. The mechanical equivalent of heat, using the energy dissipated by the Joule effect. The calorimeter with resistor. The mechanical equivalent of heat, operator J that allows the exchange of the unit calorie for joule and vice versa. The amount of heat transferred by the resistor to the calorimeter and water system, when connected. Using conservation of energy, principle of heat exchange. Measuring the temperature and determining the mass of cold water. Measuring the voltage acting on the calorimeter resistor. Measuring the heating time. Measuring the final temperature, thermal equilibrium temperature. Determining the mechanical equivalent of heat. Percentage relative error. The average value of the mechanical equivalent of heat and its uncertainty. Determination of the specific heat, mass heat capacity, of aluminum. Specific heat. Measuring the temperature of the solid test piece and knowing its mass. Measuring the final temperature, thermal equilibrium temperature. Using conservation of energy and the principle of heat exchange. Determining the specific heat of aluminum. Determining and comparing the specific heat, mass heat capacity, of different solids. Determination of the specific heat, mass heat capacity, of steel. Measuring the temperature of the solid test piece and knowing its mass. Measuring the final temperature, thermal equilibrium temperature. Using conservation of energy and the principle of heat exchange. Determining the specific heat of steel. Determining and comparing the specific heat, mass heat capacity, of different solids, etc.


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