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Final Exam Review: Vaporizing Copper A 1 0 k g solid copper block sits on a counter at room temperature ( 3 0 0 K

Final Exam Review: Vaporizing Copper
A 10kg solid copper block sits on a counter at room temperature (300K). In the room there is also a 10000F bath of liquid tungsten. The copper block is now thrown into the tungsten bath and is vaporized. Since the temperature of the tungsten bath is much higher than the temperature of the copper block, you can assume it essentially remains the same. Assume the pressure stays the same throughout the whole process (Atmospheric). The melting point of copper is 1085C and the boiling point of copper is 2562C. The specific heats and latent heats of fusion and vaporization for copper are:
Cproomtemp=0.386kJkgK,Cphot=0.400kJkgK,Lf=206kJkg,Lv=4730kJkg
a) What is the direction and magnitude of heat transfer during the whole process in kJ?
b) What is the entropy generated during the whole process?
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