QUESTION 7 Compute the density of materials based on your answers to Questions 3 to 5. (1) Chromium (Cr) has a BCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is 52 g/mol, and the radius of the Cr atom is 0.125 nm. (2) Gold (Au) has an FCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is 197 g/mol, and the radius of the Cr atom is 0.144 nm. Please upload files (pdf, or typical image file) that show your work for the three questions above. You can write your answers on paper and upload the pictures. Attach File

Chemistry: The Molecular Science
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Author:John W. Moore, Conrad L. Stanitski
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Chapter2: Chemical Compounds
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Please ans Q7. Correctly. (Gpt/Ai wrong ans not allowed)
QUESTION 7
Compute the density of materials based on your answers to Questions 3 to 5.
(1) Chromium (Cr) has a BCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr
is 52 g/mol, and the radius of the Cr atom is 0.125 nm.
(2) Gold (Au) has an FCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is
197 g/mol, and the radius of the Cr atom is 0.144 nm.
Please upload files (pdf, or typical image file) that show your work for the three questions above. You can write your
answers on paper and upload the pictures.
Attach File
Browse Local Files
QUESTION 8
The atomic weight, density, and atomic radius for a hypothetical metal are 43 g/mol, 4.9 g/cm³, and 0.122 nm,
respectively. Could this metal have an FCC crystal structure? Why or why not?
Attach File
Browse Local Files
Transcribed Image Text:QUESTION 7 Compute the density of materials based on your answers to Questions 3 to 5. (1) Chromium (Cr) has a BCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is 52 g/mol, and the radius of the Cr atom is 0.125 nm. (2) Gold (Au) has an FCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is 197 g/mol, and the radius of the Cr atom is 0.144 nm. Please upload files (pdf, or typical image file) that show your work for the three questions above. You can write your answers on paper and upload the pictures. Attach File Browse Local Files QUESTION 8 The atomic weight, density, and atomic radius for a hypothetical metal are 43 g/mol, 4.9 g/cm³, and 0.122 nm, respectively. Could this metal have an FCC crystal structure? Why or why not? Attach File Browse Local Files
QUESTION 7
Compute the density of materials based on your answers to Questions 3 to 5.
(1) Chromium (Cr) has a BCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr
is 52 g/mol, and the radius of the Cr atom is 0.125 nm.
(2) Gold (Au) has an FCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is
197 g/mol, and the radius of the Cr atom is 0.144 nm.
Please upload files (pdf, or typical image file) that show your work for the three questions above. You can write your
answers on paper and upload the pictures.
Attach File
Browse Local Files
QUESTION 8
The atomic weight, density, and atomic radius for a hypothetical metal are 43 g/mol, 4.9 g/cm³, and 0.122 nm,
respectively. Could this metal have an FCC crystal structure? Why or why not?
Attach File
Browse Local Files
Transcribed Image Text:QUESTION 7 Compute the density of materials based on your answers to Questions 3 to 5. (1) Chromium (Cr) has a BCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is 52 g/mol, and the radius of the Cr atom is 0.125 nm. (2) Gold (Au) has an FCC crystal structure. Compute its theoretical density. Knowing that the atomic weight of Cr is 197 g/mol, and the radius of the Cr atom is 0.144 nm. Please upload files (pdf, or typical image file) that show your work for the three questions above. You can write your answers on paper and upload the pictures. Attach File Browse Local Files QUESTION 8 The atomic weight, density, and atomic radius for a hypothetical metal are 43 g/mol, 4.9 g/cm³, and 0.122 nm, respectively. Could this metal have an FCC crystal structure? Why or why not? Attach File Browse Local Files
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