(jpg - 111 Ki) Structure of Ti3SiC2 and time-resolved neutron diffraction patterns recorded on D20Intensity is color-coded, from dark blue for low intensity over green and yellow and finally red and w
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Bone strengths Our bones are composed of aggregation of collagen and hydroxyapatite crystals aggregates Ca 10 (PO 4 ) 6 (OH 2 ). They are a living material with some amazing features; if damaged, they
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Neutron scattering on undercooled metallic melts This movie was shot on D20 in october 2000. The target of this experiment was diffraction studies of supercooled melts of metals or metal alloys. Here
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Simulated experiment The thermal neutron beam from the reactor is divided into two parallel beams, one for D2B, the other for D20. The D20 beam first reaches one of its four monochromators. The monoch
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Pierre Convert at work on the microstrip detector of D20 Position-sensitive multidetector Assembly of the microstrip gas-chamber position sensitive detector (2000). The advantages of this technology a
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D20 - High-intensity two-axis diffractometer with variable resolution D20 is very high intensity 2-axis diffractometer equipped with a large microstrip detector. Due to the extremely high neutron flux
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Working at PN1-Lohengrin This film was shot in the RED magnet housing on 28 May 2007, i.e. between experiment 3-01-498 (Beta-gamma spectroscopy of very neutron-rich Ge, As and Se isotopes) and experim
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Sorting particles with PN1 The role of a recoil spectrometer is to sort and recognize the nuclei fragments ejected from the sample very soon after fission, because the lifetime of fission products is
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(gif - 186 Ki) The GRID technique in shortThe animation shows typical simulated trajectories of recoiling atoms and the corresponding Doppler broadened gamma-ray lineshape. Two different orientations
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Scheme of the radiative neutron capture.Whenever a nucleus captures a slow neutron, a compound nucleus is formed. The excitation energy is close to the binding energy. The compound nucleus decays by e
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