HW1: If an X-ray diffraction pattern for a powder sample of Cr (crystal system: body-centered cubic and lattice parameter a=0.2000 nm) is measured using a conventional diffractometer, we will obtain six diffraction peaks corresponding to (110), (200), (211), (220), (310), and (222) planes. Compute the Lorentz-polarization factor using Cu-K̟radiation Lamda=1.545 nm. Hint: make a table for indexing pattern analysis.
HW1: If an X-ray diffraction pattern for a powder sample of Cr (crystal system: body-centered cubic and lattice parameter a=0.2000 nm) is measured using a conventional diffractometer, we will obtain six diffraction peaks corresponding to (110), (200), (211), (220), (310), and (222) planes. Compute the Lorentz-polarization factor using Cu-K̟radiation Lamda=1.545 nm. Hint: make a table for indexing pattern analysis.
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![HW1: If an X-ray diffraction pattern for a powder
sample of Cr (crystal system: body-centered cubic
and lattice parameter a=0.2000 nm) is measured
using a conventional diffractometer, we will obtain
six diffraction peaks corresponding to (110), (200),
(211), (220), (310), and (222) planes. Compute the
Lorentz-polarization factor using Cu-K̟radiation
Lamda=1.545 nm. Hint: make a table for indexing
pattern analysis.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbd0ab52e-9003-42e7-a5a3-5a066eaa8ce1%2Fec54862a-c45e-42e0-a26f-024e9ff4d777%2Ft5gohji_processed.jpeg&w=3840&q=75)
Transcribed Image Text:HW1: If an X-ray diffraction pattern for a powder
sample of Cr (crystal system: body-centered cubic
and lattice parameter a=0.2000 nm) is measured
using a conventional diffractometer, we will obtain
six diffraction peaks corresponding to (110), (200),
(211), (220), (310), and (222) planes. Compute the
Lorentz-polarization factor using Cu-K̟radiation
Lamda=1.545 nm. Hint: make a table for indexing
pattern analysis.
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