1) The density of a metal, which has the BCC structure and one atom per lattice point, is 0.855 g/cm. The atomic weight is 39.09 g/mol. Calculate the following (a) The fraction of the lattice points that contain vacancies and (b) The total number of vacancies in a cubic centimeter of the metal. (c) What is the activation energy required to create vacancies in cal/mole at 720° c

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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1) The density of a metal, which has the BCC structure and one atom
per lattice point, is 0.855 g/cm. The atomic weight is 39.09 g/mol.
Calculate the following
(a) The fraction of the lattice points that contain vacancies and
(b) The total number of vacancies in a cubic centimeter of the metal.
(c) What is the activation energy required to create vacancies in cal/mole
at 720° c
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Transcribed Image Text:You are viewing hammad lbraheem's screen View Options H View File Insert Page Layout References Mailings Review View Home AA 3 Find - Replace A A Aa E- E- F 1 21 T AaBbCcD AaBbCcD AaBbC Calibri (Body) - 11 Paste A. - A Change Styles Select- BIU abe x, x' 1 Normal 1 No Spac. Heading 1 Clipboard Font Paragraph Styles Editing 1) The density of a metal, which has the BCC structure and one atom per lattice point, is 0.855 g/cm. The atomic weight is 39.09 g/mol. Calculate the following (a) The fraction of the lattice points that contain vacancies and (b) The total number of vacancies in a cubic centimeter of the metal. (c) What is the activation energy required to create vacancies in cal/mole at 720° c Page: 1 of 2 Words 123 English (U.S.) DE 110% O +) 32 Leave Unmute Start Video Participants Chat Share Screen Record Reactions
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