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 Results for DC.creator="A." AND DC.creator="J." AND DC.creator="C." AND DC.creator="Wilson"   page 3 of 5 pages.
A priori predictions of molecular crystal structures
Wilson, A. J. C., Karen, V. L. and Mighell, A., International Tables for Crystallography (2006). Vol. C, Section 9.7.8, pp. 906-906 [ doi:10.1107/97809553602060000623 ]


A statistical model
Wilson, A. J. C., Karen, V. L. and Mighell, A., International Tables for Crystallography (2006). Vol. C, Section 9.7.6, pp. 904-904 [ doi:10.1107/97809553602060000623 ]
and the agreement between observed and calculated frequencies becomes too good to be interesting. References Wilson, A. J. C. (1980). Testing the hypothesis `no remaining systematic error' in parameter determination. Acta Cryst. A 36 ...

X-ray diffraction methods: polycrystalline
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, ch. 5.2, pp. 491-504 [ doi:10.1107/97809553602060000596 ]
powder methods. IV. Theoretical calculation of axial (vertical) divergence profiles, centroid shifts, and variances for cylindrical powder diffraction cameras. Acta Cryst . 17, 645–651. Google Scholar Langford, J. I. & Wilson, A. J. C ...

Whole-pattern methods
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, Section 5.2.6, pp. 496-496 [ doi:10.1107/97809553602060000596 ]


Errors of the Bragg angle
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, Section 5.2.1.3, pp. 491-491 [ doi:10.1107/97809553602060000596 ]

     [more results from section 5.2.1 in volume C]

Errors and uncertainties in wavelength
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, Section 5.2.2.1, pp. 492-492 [ doi:10.1107/97809553602060000596 ]
–132. New York: McGraw-Hill. Google Scholar Wilson, A. J. C. (1963). Mathematical theory of X-ray powder diffractometry. Eindhoven: Centrex. Google Scholar International Tables for Crystallography (2006). Vol. C. ch ...
     [more results from section 5.2.2 in volume C]

Factors determining accuracy
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, Section 5.2.13, pp. 501-504 [ doi:10.1107/97809553602060000596 ]


Angle-dispersive diffractometer methods: conventional sources
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, Section 5.2.4, pp. 495-495 [ doi:10.1107/97809553602060000596 ]
693–700. Google Scholar Wilson, A. J. C. (1961). A note on peak displacements in X-ray diffractometry. Proc. Phys. Soc. London, 78, 249–255. Google Scholar Wilson, A. J. C. (1963). Mathematical theory of X-ray powder ...

Extrapolation, graphical and analytical
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, Section 5.2.3.2, pp. 493-494 [ doi:10.1107/97809553602060000596 ]
of a `round-robin' exercise comparing the output of computer programs for lattice-parameter refinement and calculations. British Crystallographic Association. Google Scholar Langford, J. I. & Wilson, A. J. C. (1962). Counter diffractometer ...
     [more results from section 5.2.3 in volume C]

Energy-dispersive techniques
Parrish, W., Wilson, A. J. C. and Langford, J. I., International Tables for Crystallography (2006). Vol. C, Section 5.2.7, pp. 496-497 [ doi:10.1107/97809553602060000596 ]
 Scholar Langford, J. I. & Wilson, A. J. C. (1962). Counter diffractometer: the effect of specimen transparency on the intensity, position and breadth of X-ray powder diffraction lines. J. Sci. Instrum. 39, 581–585. Google Scholar ...

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