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Specific heat of milk

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Specific heat of milk

RELATING HEAT CHANGE & TEMPERATURE CHANGE Heat Capacity: Amount of heat energy required to raise the temperature of a substance (of any mass) by 1°C or 1K.C = J/°C Specific Heat Capacity: Amount of heat energy required to raise the temperature of 1 g of a substance by 1°C or 1K.c = J/g°C You are provided a glass of milk and a swimming pool full of milk.

The apparent specific heat of different milks varying in fat mass contents from 0.1% to 35%, were determined in the temperature range 1-59°C by means of a continuous differential scanning calorimeter (DSC) method.Given the specific heat capacity of the noodle and water are 1700 and 4200 respectively. Solution. Let be the temperature of the mixture soon after mixing. Heat loss by hot water =. Heat gain by noodle =. Assuming no heat is lost to the surrounding, we have. Heat loss by hot water = Heat gain by noodle.heat properties of ice cream, we determined the specific heat capacity of milk fat and non-fat dry milk. Mixing was used for measurement. To do this, a water calorimeter with silver 2-liter containers. The temperature of the water was measured by calibrated thermometers accurate to 0.001%. ...RELATING HEAT CHANGE & TEMPERATURE CHANGE Heat Capacity: Amount of heat energy required to raise the temperature of a substance (of any mass) by 1°C or 1K.C = J/°C Specific Heat Capacity: Amount of heat energy required to raise the temperature of 1 g of a substance by 1°C or 1K.c = J/g°C You are provided a glass of milk and a swimming pool full of milk.x Specific gravity: Specific gravity is the ratio of the density (mass of a unit volume) of a substance to the density (mass of the same unit volume) of a reference substance. In most of the cases the reference substance is water for liquids or air for gases. Specific gravity represents a ratio and is therefore dimensionless.

when 10.0 g of milk at 10.0°C is added to 160 g of coffee at 90.0°C. (Assume the specific heats of coffee and milk are the same as water and neglect the heat capacity of the container.) c water = 1.00 cal/g·°C = 4186 J/kg·°C