## Neutron scattering data analysis 1990: invited and contributed papers from the Conference on Neutron Scattering Data Analysis held at the Rutherford Appleton Laboratory, Chilton, 14-16 March 1990 |

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Page 89

Figure 7 shows a view of all the detectors, made from a run, (number 87) testing

for noise in detectors. This is normally displayed on a colour screen, using 5

colours arranged in a 'traffic light' scale. Detectors not yet installed are

...

Figure 7 shows a view of all the detectors, made from a run, (number 87) testing

for noise in detectors. This is normally displayed on a colour screen, using 5

colours arranged in a 'traffic light' scale. Detectors not yet installed are

**shown**as...

Page 115

As a matter of fact, the side small peaks are entirely artefacts, as

entropic reconstructions. Two distinct entropic reconstructions involving either a

positive/negative or a positive definite magnetisation density are

As a matter of fact, the side small peaks are entirely artefacts, as

**shown**by theentropic reconstructions. Two distinct entropic reconstructions involving either a

positive/negative or a positive definite magnetisation density are

**shown**in (C,D) ...Page 238

The corrected data for the polymer solution is

scattering results

(Debye 1947),

total ...

The corrected data for the polymer solution is

**shown**in figure 3. The elasticscattering results

**shown**in figure 3a can be fitted very well by the Debve function(Debye 1947),

**shown**as a solid line, giving a radius of gyration of 24.7A. Thetotal ...

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Acta Cryst algorithm applications approach atoms Bayesian beam Bragg peaks calculated configuration constraints coordinates corresponding cost function cross-section crystallographic Data Anal data analysis data set defined detector bank determined diffraction data diffractometer elastic scattering energy error bars example experiment experimental Figure Fourier transform Gaussian GENIE GENIE-V3 histogram inelastic instrument intensity interpolation inverse ISIS least squares likelihood function magnetic structure magnetisation density Markov chain matrix MaxEnt Reconstruction Maximum Entropy McGreevy measured method molecular Monte Carlo neutron diffraction neutron scattering normalisation normalization obtained optimisation optimization problems parameters Patterson map performed Phys plot positive powder diffraction presented at Neutron prior probability procedure quasielastic refinement reflectivity data resolution function ROTAX Rutherford Appleton Laboratory sample scan scattering law shown simulated annealing single crystal solution spectra spectrometer spectrum statistical structure factor symmetry technique temperature time-of-flight UNIRAS unit cell vanadium vector wavelength workspace