Amount of heat needed calculator

    • [DOC File]SPECIFIC HEAT CAPACITY AND CALORIMETRY

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      Write in all formulas used to calculate heat. b. Determine the amount of heat necessary to convert 15.0g of water at 100.0ºC to steam at 100.0ºC. H = mHv. H = 15(2260) c. Determine the amount of heat necessary to convert 15.0g of ice at 0.0ºC to liquid at 0.0º C. H = mHf. H = 15(334) d.

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    • [DOC File]Specific Heat Worksheet

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      5. 100.0 mL of 4.0°C water is heated until its temperature is 37°C. If the specific heat of water is 4.18 J/g°C, calculate the amount of heat energy needed to cause this rise in temperature. 6. 25.0 g of mercury is heated from 25°C to 155°C, and absorbs 455 joules of heat in the process. Calculate the specific heat capacity of mercury. 7.

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    • [DOC File]FORMULA SHEET - Homestead

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      The amount of space in cubic feet occupied by 1 lb of air -Dew Point: The temp at which moisture will start to condense out of a given sample of air -Enthalpy(TH): Measurement of heat content of a given sample of air expressed in BTU/Lb -Sensible Heat(SH): Amount of heat added or removed from a given sample of air expressed in BTU/Lb -

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    • [DOC File]Calculating Specific Heat Worksheet

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      If the specific heat of water is 4.18 J/g°C, calculate the amount of heat energy needed to cause this rise in temperature. 5. 25.0 g of mercury is heated from 25°C to 155°C, and absorbs 455 joules of heat in the process. Calculate the specific heat capacity of mercury.

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    • [DOC File]Specific Heat Worksheet

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      If the specific heat of water is 4.18 J/g°C, calculate the amount of heat energy needed to cause this rise in temperature. 25.0 g of mercury is heated from 25°C to 155°C, and absorbs 455 joules of heat in the process. Calculate the specific heat capacity of mercury.

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    • [DOC File]The Heat is On - The Energy Stored in Food

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      The heat needed to raise the temperature one gram of water is known as the Heat of fusion and has a value of 80 cal/g for water. The density of water is 1.0 g/cm3, so it is assumed that the volume of water in mL will be equal to the mass of the water in g. 1 mL H2O = 1 g H2O. The heat produced by the burning peanut is calculated by the equation:

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    • [DOC File]Thermal Oxidizer Energy Efficiency

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      The heat exchanger efficiency is the ratio of the heat transferred from the hot side to the cold side of the heat exchanger to the theoretical amount of heat that would be transferred if the temperature of the hot side mass flow was reduced to the ambient temperature at the heat exchanger’s exhaust.

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    • [DOC File]AP Chemistry

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      The longer boiling line, B-C, means that Hvap > Hfus. 25. Calculate the amount of heat needed to warm 2 mole of H2O between the given temperatures or phase change.-10oC 0oC Q = nCs T = (2 mol)(37.8 J/mol•K)(10 K) Q = 756 J (0.756 kJ) melt Q = n Hfus

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