Metallurgical Engineering > GATE 2020 > Driving Force
If liquid copper is cooled to 1353 K, magnitude of the driving force for liquid to transform to solid is _______ J⋅mol⁻¹ (round off to one decimal place).
Given, melting temperature and enthalpy of melting of copper are 1356 K and 13 kJ⋅mol⁻¹ respectively.

Correct : 87.0

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copper melting point copper enthalpy of melting driving force solidification metallurgical engineering gate 2020 melting temperature copper enthalpy melting copper solidification driving force copper melting point transformation

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