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Quantitative phase analysis
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, ch. 3.9, pp. 344-373 [ doi:10.1107/97809553602060000954 ]
... on an electron, me is the mass of an electron, r is the distance from the scattering electron to the detector ... can be separately broadened and shifted, following prescribed rules (Bergmann & Kleeberg, 1998 ). In this way, the broadening of special classes ... this fashion can be used directly in phase quantification (Ufer, Kleeberg et al., 2008 ; Ufer, Stanjek et al., 2008 ). ...

Phase-specific methods: diffraction SRMs, round-robin samples and synthetic mixtures
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.10.3.6, pp. 369-370 [ doi:10.1107/97809553602060000954 ]
... is the Reynolds Cup (Ottner et al., 2000 ; McCarty, 2002 ; Kleeberg, 2005 ; Omotoso et al., 2006 ; Raven & Self, 2017 ), organized biannually ... Rietveld phase analysis of pharmaceuticals. Powder Diffr. 25, 60-67.GoogleScholar Kleeberg, R. (2005). Results of the second Reynolds Cup contest ...
     [more results from section 3.9.10 in volume H]

QPA using energy-dispersive diffraction data
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.9, pp. 362-364 [ doi:10.1107/97809553602060000954 ]
... and Styles et al. (2012 ). References Ballirano, P. & Caminiti, R. (2001). Rietveld refinements on laboratory energy dispersive X-ray ... a storage ring. J. Appl. Cryst. 12, 531-536.GoogleScholar Cernik, R. J., Hansson, C. C. T., Martin, C. M., Preuss, M. ... S. L., Jupe, A. C., Jacques, S. D. M., Livingston, R., Ramadan, A. O. A., Amde, A. W. & Barnes, P. ( ...

QPA using neutron diffraction data
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.8, p. 362 [ doi:10.1107/97809553602060000954 ]
... quantitative phase analyses. Cem. Concr. Res. 32, 1347-1356.GoogleScholar Hill, R. J. & Howard, C. J. (1987). Quantitative phase analysis from ... the Rietveld method. J. Appl. Cryst. 20, 467-474.GoogleScholar Hill, R. J., Howard, C. J. & Reichert, B. E. (1991). Quantitative ... x-ray powder diffraction. Z. Kristallogr. 226, 944-955.GoogleScholar Morris, R. E., Harrison, W. T. A., Nicol, J. M., Wilkinson, ...

Data analysis
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.7.1, pp. 361-362 [ doi:10.1107/97809553602060000954 ]
... for powder diffraction data. Version 5. https://www.bruker.com/topas.GoogleScholar Hill, R. J. & Howard, C. J. (1987). Quantitative phase analysis from ...
     [more results from section 3.9.7 in volume H]

Quantitative determination of amorphous material
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.6.3, pp. 360-361 [ doi:10.1107/97809553602060000954 ]
... material in the sample. References Cline, J. P., Von Dreele, R. B., Winburn, R., Stephens, P. W. & Filliben, J. J. (2011). Addressing the ... x-ray powder diffraction. Z. Kristallogr. 226, 944-955.GoogleScholar Williams, R. P., Hart, R. D. & van Riessen, A. (2011). ...
     [more results from section 3.9.6 in volume H]

Experiment constant - a whole-sample approach
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.5.3, pp. 355-356 [ doi:10.1107/97809553602060000954 ]
Experiment constant - a whole-sample approach 3.9.5.3. Experiment constant - a whole-sample approach Earlier discussion has noted that the experiment constant K used in equation (3.9.21) can be determined using (i) a standard pure phase or mixture measured separately from the measurement of the actual unknown mixture being analysed, or (ii ...
     [more results from section 3.9.5 in volume H]

Rietveld-based methods
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.4.5, pp. 352-353 [ doi:10.1107/97809553602060000954 ]
... C., Eikenberry, E. F., Gozzo, F., Hörmann, C., Horisberger, R. & Patterson, B. (2003). Mythen detector system. Nucl. Instrum. Methods ... N. A. S., Madsen, I. C., Loan, M. J., Knott, R. B., Naim, F., Wallwork, K. S. & Kimpton, J. A. (2010 ...
     [more results from section 3.9.4 in volume H]

Rietveld-based QPA
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.3.6, pp. 348-350 [ doi:10.1107/97809553602060000954 ]
... phase abundances must be used. References Bergmann, J., Friedel, P. & Kleeberg, R. (1998). Bgmn - a new fundamental parameters based Rietveld program ... Commission on Powder Diffraction Newsletter, 20, 5-8.GoogleScholar Bergmann, J., Kleeberg, R., Haase, A. & Breidenstein, B. (2000). Advanced fundamental ...
     [more results from section 3.9.3 in volume H]

Phase analysis
Madsen, I., Scarlett, N., Kleeberg, R. and Knorr, K.  International Tables for Crystallography (2019). Vol. H, Section 3.9.2, pp. 344-345 [ doi:10.1107/97809553602060000954 ]
... samples, or (ii) calculated from crystal-structure information. References Bogue, R. H. (1929). Calculation of the compounds in Portland cement. ...

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