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Page 40
Some of the points so generated are shown in the figure, at the ends of dashed
lines, in order to exhibit the hexagonal symmetry of the lattice, which has a 6-fold
rotation axis parallel to c. The third axis ag, lying in the basal plane of the ...
Some of the points so generated are shown in the figure, at the ends of dashed
lines, in order to exhibit the hexagonal symmetry of the lattice, which has a 6-fold
rotation axis parallel to c. The third axis ag, lying in the basal plane of the ...
Page 43
each point of a Bravais lattice, as exemplified by the hexagonal close-packed (
HCP) structure common to many metals. This structure is simple hexagonal and
is illustrated in Fig. 2–15. There are two atoms per unit cell, as shown in (a), one
at ...
each point of a Bravais lattice, as exemplified by the hexagonal close-packed (
HCP) structure common to many metals. This structure is simple hexagonal and
is illustrated in Fig. 2–15. There are two atoms per unit cell, as shown in (a), one
at ...
Page 462
Bernard Dennis Cullity. APPENDIX 2 THE RHOMBOHEDRAL-HEXAGONAL
TRANSFORMATION The lattice of points shown in Fig. A2-1 is rhombohedral,
that is, it possesses the symmetry elements characteristic of the rhombohedral
system.
Bernard Dennis Cullity. APPENDIX 2 THE RHOMBOHEDRAL-HEXAGONAL
TRANSFORMATION The lattice of points shown in Fig. A2-1 is rhombohedral,
that is, it possesses the symmetry elements characteristic of the rhombohedral
system.
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User Review - ron_benson - LibraryThingExcellent reference book. Needs some updating in terms of advances in detector technology. Read full review
Contents
PROPERTIES OF XRAYS | 1 |
THE GEOMETRY OF CRYSTALS | 29 |
THE DIRECTIONS OF DIFFRACTED BEAMS | 78 |
Copyright | |
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Elements of X-ray Diffraction Bernard Dennis Cullity,Stuart R. Stock,Stuart R.. Stock Snippet view - 2001 |
Common terms and phrases
absorption alloy analysis angle applied atoms axis Bragg calculated camera cause circle composition consider constant contains copper counter counting crystal cubic curve decreases depends described determined diffracted beam diffraction lines diffractometer direction distance effect electrons elements energy equal equation error example factor Figure film fluorescent given gives grain hexagonal incident beam increases indices intensity involved kind known lattice Laue length located material means measured metal method normal observed obtained occur orientation parallel parameter particular pattern percent phase photograph plane plotted pole position possible powder produced projection proportional pulses radiation rays reference reflection relation relative result rotation sample scattering shown shown in Fig shows simple single slit solid solution spacing specimen stress structure substance surface temperature thickness tion tube twin unit cell usually vector voltage wave wavelength x-ray