3.4 Calculate the energy for vacancy formation in nickel (Ni), given that the equilibrium number of vacancies at 850°C (1123 K) is 4.7 x 10²² m³. The atomic weight and density (at 850°C) for Ni are, respectively, 58.69 g/mol and 8.80 g/cm³.
3.4 Calculate the energy for vacancy formation in nickel (Ni), given that the equilibrium number of vacancies at 850°C (1123 K) is 4.7 x 10²² m³. The atomic weight and density (at 850°C) for Ni are, respectively, 58.69 g/mol and 8.80 g/cm³.
Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter21: Chemistry Of The Nonmetals
Section: Chapter Questions
Problem 72QAP
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![3.4 Calculate the energy for vacancy formation in nickel (Ni), given that the
equilibrium number of vacancies at 850°C (1123 K) is 4.7 x 10²² m³. The atomic
weight and density (at 850°C) for Ni are, respectively, 58.69 g/mol and 8.80 g/cm³.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0fb7e309-59c9-4ed8-8b13-a25379b18db0%2F0284569e-43ac-4d7a-a390-626e8220efe7%2Fdzbu65_processed.png&w=3840&q=75)
Transcribed Image Text:3.4 Calculate the energy for vacancy formation in nickel (Ni), given that the
equilibrium number of vacancies at 850°C (1123 K) is 4.7 x 10²² m³. The atomic
weight and density (at 850°C) for Ni are, respectively, 58.69 g/mol and 8.80 g/cm³.
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