the molar heat capacity of silver is 25.35 j/mol⋅∘c . how much energy would it take to raise the temperature of 8.20 g of silver by 17.3 ∘c ? express your answer with the appropriate units.

Answers

Answer 1

33.34 J of energy it would take to raise the temperature.

Specific heat = J/g C

(25.35 J/mole C) x (1 mole / 107.8682g) = 0.2350 J/g C

Energy required = (mass in grams)x(Specific heat)x(Temp final - Temp initial)

= (8.20 g)(0.2350 J/g C)(17.3°C) = 33.34 J (units cancel for /g C)

Heat capacity or specific heat is the quantity of heat consistent with unit mass that is required to elevate the temperature with the aid of 1°C. particular warmness is helpful in figuring out the processing temperatures and quantity of warmth vital for processing and may be helpful in differentiating between  polymeric composites.

The specific heat capacity (or in reality, the specific heat), that's the heat potential according to unit mass of a material. Experiments show that the transferred heat relies upon on three factors: (1) The change in temperature, (2) the mass of the system, and (3) the substance and phase of the substance.

The specific heat is the quantity of heat energy per unit mass required to elevate the temperature by way of one degree Celsius. The connection between warmth and temperature change is commonly expressed inside the form shown under where c is the unique warmness .

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