Formula for heat capacity

    • Specific Heat Capacity Lab

      Determine the heat transferred to the water in each trial by using the formula for specific heat capacity. Use the temperature of the hot water bath and the final temperature of the calorimeter to determine the temperature change for each metal sample. Solve for the specific heat capacity of each metal sample.

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    • How to Calculate Heat Capacity: 8 Steps (with Pictures) - wikiHow

      Introduction: In our study of the heat produced by exothermic reactions, we determined the molar heat of combustion of several fuels. To do this we used calorimetry, and made use of the relationship. q = Cp * m * ΔT. and the “given” that the specific …

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    • [DOC File]Determination of the Specific Heat Capacity of a Metal

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      c = specific heat capacity (J/g C or kJ/g C) ∆t = temperature change ( C) If given the specific heat capacity, mass and temperature change of one substance. nH = mc∆t n = moles of substance reacting (n = cv or m/M) (mol)

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    • [DOC File]FORMULA SHEET - Homestead

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      Calculate the heat capacity of a piece of wood if 1500.0 g of the wood absorbs 6.75×104 joules of heat, and its temperature changes from 32°C to 57°C. 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. ...

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    • [DOC File]Chem 30 Formulas

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      Calculate the specific heat capacity of a piece of wood if 1500.0 g of the wood absorbs 67,500 joules of heat, and its temperature changes from 32°C to 57°C. 4. 100.0 g 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 ...

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    • [DOC File]Calculating Specific Heat Worksheet

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      Know the formula of heat capacity (c) Explain how to calculate The value of the molar enthalpy of neutralization for the reaction between HCl(aq) and NaOH(aq) Determine the quantity of the heat produced, q, from . q = mc*change in T, where m = total mass of solution; divide q by mol H2O .

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    • [DOC File]1

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      Sensible Heat ÷ Total Heat . Bypass Factor = (Leaving Db– Coil Temp)÷(Entering Db–Coil Temp) Total Sensible Heat Formula = 1.08 x CFM x Change in temp Approx system Capacity= 4.5 x CFM x (Change in Enthalpy) or (Total CFM ÷ 400) Area of a rectangular Duct= L x W ÷ 144 . Area of a round Duct= Pie diameter squared ÷ 4 x 144 Air Mixture Temp Formula

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