a.) Calculate the equilibrium concentration of vacancies per cubic meter in pure copper at 600° C. (Assume that the energy of formation of a vacancy in pure copper is .96 eV) (Cu: density = 8.96 g/cm3, atomic mass = 63.54 g/atomic mass) b.) What is the vacancy fraction at 650° C
a.) Calculate the equilibrium concentration of vacancies per cubic meter in pure copper at 600° C. (Assume that the energy of formation of a vacancy in pure copper is .96 eV) (Cu: density = 8.96 g/cm3, atomic mass = 63.54 g/atomic mass) b.) What is the vacancy fraction at 650° C
Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12.118PAE
Related questions
Question
- a.) Calculate the equilibrium concentration of vacancies per cubic meter in pure copper at 600° C.
(Assume that the energy of formation of a vacancy in pure copper is .96 eV)
(Cu: density = 8.96 g/cm3, atomic mass = 63.54 g/atomic mass)
b.) What is the vacancy fraction at 650° C
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