Q.3. Find the equilibrium number of vacancies in 1m3 of Cu at 1000 °C. Vacancy formation energy per vacancy is 0.85 eV/atom. Atomic weight of copper is 63.45 g/mol and density @ 1000°C is 8.35 g/cm³.

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 12.26PAE: The following data were collected for the reaction, H2(g) + L(g) ** - HI(g), at equilibrium at 25°C:...
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Q.3. Find the equilibrium number of vacancies in 1m³ of Cu at 1000 °C. Vacancy formation energy
per vacancy is 0.85 eV/atom. Atomic weight of copper is 63.45 g/mol and density @ 1000°C is 8.35
g/cm?.
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.
Transcribed Image Text:Q.3. Find the equilibrium number of vacancies in 1m³ of Cu at 1000 °C. Vacancy formation energy per vacancy is 0.85 eV/atom. Atomic weight of copper is 63.45 g/mol and density @ 1000°C is 8.35 g/cm?. 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.
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