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Titlebook: Neutrons in Biology; Benno P. Schoenborn,Robert B. Knott Book 1996 Springer Science+Business Media New York 1996 DNA.Lipid.base.developmen

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Neutron Scattering in Australia spallation source ISIS..Various aspects of neutron scattering have been implemented on HIFAR, including investigations of the structure of biological relevant molecules. One aspect of these investigations will be presented. Preliminary results from a study of the interaction of the immunosuppressan
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Fluid Bilayer Structure Determinationle. We have therefore developed the ‘composition space’ refinement method for combining X-ray and minimal neutron diffraction data to arrive at remarkably detailed and accurate structures of fluid bilayers. The composition space representation of the bilayer describes the probability of occupancy pe
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Neutron Reflectivity Studies of Single Lipid Bilayers Supported on Planar Substratesnt. Thus, the reflectivity was measured to Q ~ 0.3Å., covering up to seven orders of magnitude in reflected intensity, for PC bilayers in D.O and silicon-matched (38% D.O/62% H.O) water. The kinetics of lipid adsorption at the silicon/water interface were also explored by observing changes in the re
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Book 1996te 1980s and early 1990s, some spectacular results have been achieved. Whilst the high and medium flux beam reac­ tors will continue to make a major impact in the field, the results from the first experi­ ments, and the planned developments on spallation neutron sources, clearly indicate that the te
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Neutron Scattering Facilities techniques applicable to biological problems will be reviewed, emphasizing the relation between structure, dynamics and function. The use of isotope labeling and anomalous neutron scattering to identify the environments of specific atoms of structural elements will be highlighted..Work supported by U.S. DOE Contract #W-3 1-1 092ENG-38.
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