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 Results for by Richards, F. M.
Immersion microbalance
Richards, F. M., International Tables for Crystallography (2006). Vol. C, Section 3.2.2.5, pp. 158-158 [ doi:10.1107/97809553602060000586 ]
or greater. The accuracy is related inversely to the difference in density between the crystal and its mother liquor. References Low, B. W. & Richards, F. M. (1952 b). Determination of protein crystal densities. Nature (London ...
     [more results from section 3.2.2 in volume C]

Protein geometry: volumes, areas and distances
Gerstein, M. and Richards, F. M., International Tables for Crystallography (2012). Vol. F, ch. 22.1, pp. 703-712 [ doi:10.1107/97809553602060000885 ]
The interdependence of protein surface topography and bound water molecules revealed by surface accessibility and fractal density measures . J. Mol. Biol. 228, 13–22. Google Scholar Lee, B. & Richards, F. M. (1971). The interpretation ...

Looser packing on the surface
Gerstein, M. and Richards, F. M., International Tables for Crystallography (2012). Vol. F, Section 22.1.5.3, pp. 711-711 [ doi:10.1107/97809553602060000885 ]
Google Scholar Lee, B. & Richards, F. M. (1971). The interpretation of protein structures: estimation of static accessibility . J. Mol. Biol. 55, 379–400. Google Scholar Levitt, M., Hirshberg, M., Sharon, R ...
     [more results from section 22.1.5 in volume F]

Delaunay triangulation
Gerstein, M. and Richards, F. M., International Tables for Crystallography (2012). Vol. F, Section 22.1.2.4, pp. 705-706 [ doi:10.1107/97809553602060000885 ]

     [more results from section 22.1.2 in volume F]

Solvent-accessible surface (SAS)
Gerstein, M. and Richards, F. M., International Tables for Crystallography (2012). Vol. F, Section 22.1.3.3.2, pp. 707-707 [ doi:10.1107/97809553602060000885 ]
References Lee, B. & Richards, F. M. (1971). The interpretation of protein structures: estimation of static accessibility . J. Mol. Biol. 55, 379–400. Google Scholar International Tables for Crystallography (2012 ...
     [more results from section 22.1.3 in volume F]

Definitions of atomic radii
Gerstein, M. and Richards, F. M., International Tables for Crystallography (2012). Vol. F, Section 22.1.4, pp. 708-709 [ doi:10.1107/97809553602060000885 ]
However, there is no uniform agreement on what the proper water radius should be. Usually it is chosen to be about 1.4 Å. References Lee, B. & Richards, F. M. (1971). The interpretation of protein structures: estimation ...
     [more results from section 22.1.4 in volume F]

Introduction
Gerstein, M. and Richards, F. M., International Tables for Crystallography (2012). Vol. F, Section 22.1.1, pp. 703-703 [ doi:10.1107/97809553602060000885 ]


Determination of the density of solids
Richards, F. M. and Lindley, P. F., International Tables for Crystallography (2006). Vol. C, ch. 3.2, pp. 156-159 [ doi:10.1107/97809553602060000586 ]
Johnston, J. & Adams, L. H. (1912). On the density of solid substances, with especial reference to permanent changes produced by high pressures. J. Am. Chem. Soc. 34, 563–584. Google Scholar Kundrot, C. E. & Richards, F. M. (1988 ...

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