Vanadium oxide, V2O3, crystallizes in the space-group symmetry R¯3c with lattice parameters a = 4.954 °A and c = 14.00 A° . Calculate the interplanar spacing, d, and Bragg peak positions, 2θ, for the 104 (the strongest Bragg peak) and for the 012 (the lowest Bragg angle peak) reflections assuming Cu Kα1 radiation with λ = 1.5406 A°.
Vanadium oxide, V2O3, crystallizes in the space-group symmetry R¯3c with lattice parameters a = 4.954 °A and c = 14.00 A° . Calculate the interplanar spacing, d, and Bragg peak positions, 2θ, for the 104 (the strongest Bragg peak) and for the 012 (the lowest Bragg angle peak) reflections assuming Cu Kα1 radiation with λ = 1.5406 A°.
Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter14: Rotational And Vibrational Spectroscopy
Section: Chapter Questions
Problem 14.85E
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Vanadium oxide, V2O3, crystallizes in the space-group symmetry R¯3c with lattice parameters a = 4.954 °A and c = 14.00 A° . Calculate the interplanar spacing, d, and Bragg peak positions, 2θ, for the 104 (the strongest Bragg peak) and for the 012 (the lowest Bragg angle peak) reflections assuming Cu Kα1 radiation with λ = 1.5406 A°.
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