Q.5.Calculate the equilibrium concentration of vacancies per cubic meter in pure copper at 850°C. Assume that the energy of formation of vacancy in pure copper is 10eV. (b) what is the vacancy fraction at 800°C?

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Chapter31: Radioactivity And Nuclear Physics
Section: Chapter Questions
Problem 3PE: (a) Repeat Exercise 31.2, and convert the energy to joules or calories. (b) If all of this energy is...
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Q.4. Find the equilibrium concentration of vacancies in Aluminium at – 273°C, and 27°C. The
vacancy formation energy is 68 x 103 J/mole.
Q.5.Calculate the equilibrium concentration of vacancies per cubic meter in pure copper at 850°C.
Assume that the energy of formation of vacancy in pure copper is 10eV. (b) what is the vacancy
fraction at 800°C?
Transcribed Image Text:Q.4. Find the equilibrium concentration of vacancies in Aluminium at – 273°C, and 27°C. The vacancy formation energy is 68 x 103 J/mole. Q.5.Calculate the equilibrium concentration of vacancies per cubic meter in pure copper at 850°C. Assume that the energy of formation of vacancy in pure copper is 10eV. (b) what is the vacancy fraction at 800°C?
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