de méthodes, basées sur l'utilisation de faisceaux neutroniques à l'Institut Laue-Langevin (ILL) – leader mondial en sciences et techniques neutroniques - pour examiner les processus en profondeur. De nouvelles ... nombre de peintures endommagées suite à une restauration. • De nouvelles recherches utilisent des neutrons pour examiner comment les ...
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Pertinence: 100%
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Guide hall n°1, cold guide H141 Data Collection Method Quasi-Laue Neutron Velocity Selector Typical neutron λ 3.35 to 3.70 Å (with NVS@25K rpm) Collimation Pinholes 0.5 to 2.9 mm Flux at specimen (λ-centre ... δλ/λ ~10%) ~1 x 10 8 n cm -2 s -1 Detector Cylindrical drum with internal neutron-sensitive image plates and read/erase system Neutron image ...
Pertinence: 23%
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capacity for neutron macromolecular crystallography at the ILL, a second quasi-Laue diffractometer DALI has been commissioned at H141 as part of the ILL Endurance Programme. DALI utilizes a neutron velocity ... and hydration. Neutron macromolecular crystallography is unique in its ability to provide these invaluable details at room-temperature , ...
Pertinence: 23%
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are fed with tremendous amounts of data from billions of users, the large data from synchrotron or neutron experiments are orders of magnitude smaller (typically in the mega or gigabyte range). Nevertheless ... Nevertheless, some of these algorithms have already successfully been applied to data sets taken from neutron spectrometers [2] . While the ...
Pertinence: 100%
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techniques will be used for the characterization of the nanostructures, in particular, small-angle neutron scattering (SANS), static and dynamic light scattering (SLS & DLS), AFM, UV-Vis spectroscopy, Isothermal
Pertinence: 16%
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variety of techniques including a Langmuir trough, Brewster angle microscopy (BAM), ellipsometry and neutron reflectivity, in combination with contrast variation. In particular whether or not the delivery vehicles
Pertinence: 17%
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The purpose of this PhD proposal is to study the magnetic structure of an epitaxial thin film by neutron diffraction considering the film as a single crystal. The films will be grown by layer by layer ultra
Pertinence: 18%
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for Cl and Br). X-Ray single crystal and powder synchrotron diffraction, single crystal and powder neutron diffraction. Magnetic structure determination. Magnetic measurements, DSC, ferroelectricity, plastic
Pertinence: 19%
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temperature in a physiologically relevant range. We will combine small-angle x-ray and neutron scattering, high resolution neutron spectroscopy as well as x-ray photon correlation spectroscopy to obtain a dynamic
Pertinence: 20%
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scattering techniques, such as static and dynamic light scattering (DLS and SLS) and small angle neutron scattering (SANS) with the technique of contrast variation. More information on the project (InnovaXN
Pertinence: 17%
