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NEUTRON RESULTS AND DISCUSSION
Table Page I Neutron Si442 Relative Scan Data
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Absolute Scan angular anharmonic azimuthal background ratio beam sizes boron glass absorbers Bragg angle Bragg peak Bragg reflection calculated centrosymmetric channel number CM CM collimator column Compton scattering counter Dawson and Willis Debye-Waller factor determined diamond structure diffracted beam diffracted power diffraction vector electrons energy Ewald sphere exit collimator experiment experimental forbidden reflections function of temperature FWHM Ge(lll germanium given h+k+A harmonic contaminants higher order forbidden improvement kinematic kinematic theory MCA Output measured Miller indices minutes of arc molybdenum monochromator multiple reflections noise ratio nominal Bragg angle non-centrosymmetric peak height photons plotted position pyrolytic graphite reflections in silicon relative scans rH rH rocking curves scattered intensity Schematic shown in figure signal to noise silicon slit structure factor Table technique temperature dependence thermal diffuse scattering thick section tion total diffracted transmission Trucano values of F velocity selector weak Bragg x y z x-ray