A mole of supercooled liquid of silver, undergoing isothermal irreversible solidification at 700 °C, releases 11,393 J of heat. Calculate the specific heat, C. Assume that C, does not depend on temperature. Data: Cp(s) = 21.3 + 8.55 x 10-3T+1.50 x 105T-2 J/K•M01, Tmp= 961.9 °C, Lf (latent heat of fusion) = 11.3 kJ/Mol

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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A mole of supercooled liquid of silver, undergoing isothermal irreversible
solidification at 700 °C, releases 11,393 J of heat. Calculate the specific heat, C.
Assume that C does not depend on temperature.
Data: Cp(s) = 21.3 + 8.55 x 10-3T+1.50 x 105T-2 J/K•M01, Tmp= 961.9 °C, Lf (latent
heat of fusion) = 11.3 kJ/Mol
Transcribed Image Text:A mole of supercooled liquid of silver, undergoing isothermal irreversible solidification at 700 °C, releases 11,393 J of heat. Calculate the specific heat, C. Assume that C does not depend on temperature. Data: Cp(s) = 21.3 + 8.55 x 10-3T+1.50 x 105T-2 J/K•M01, Tmp= 961.9 °C, Lf (latent heat of fusion) = 11.3 kJ/Mol
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