and 160 daN vertically. So we can assume that the forces will be those measured with the 12T increased by 15% radially and 35% vertically. From the above conclusions, we can reasonably estimate that the ... measurements have been performed for several positions, sometimes very near the neutron guide. This magnet can be used at nominal field and any ...
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of the measurements shown on the right have been obtained after these modifications. We can see that the 15T can be used up to nominal field whatever are the positions of the sample table and analyser
Pertinence: 17%
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and each time for the worst A4 and A6 angles. To summarize, the forces are acceptable and the 15T can be used at nominal field when the distance between the sample table and the analyser is 420 mm as shown
Pertinence: 15%
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pressurising bladder). Start with 40 to 60 mbar pressure until the helium level starts to rise . You can then increase the pressure up to 100 - 150 mbar. Normally 12 litres of liquid helium are sufficient
Pertinence: 9%
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M6/femelle thread. (pdf - 573 Ki) The standard sample can contain up to Ø15 mm samples, electrodes included. It is possible to use a large sample can when necessary (contact us in advance).
Pertinence: 17%
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M6/femelle thread. (pdf - 573 Ki) The standard sample can contain up to Ø15 mm samples, electrodes included. It is possible to use a large sample can when necessary (contact us in advance).
Pertinence: 17%
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on. The angle of rotation does not depend on the amplitude of the magnetic interaction vector. We can see that the cross-section does not depend on the orientation of the magnetic interaction vector.
Pertinence: 15%
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on. The angle of rotation does not depend on the amplitude of the magnetic interaction vector. We can see that the cross-section does not depend on the orientation of the magnetic interaction vector.
Pertinence: 15%
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on. The angle of rotation does not depend on the amplitude of the magnetic interaction vector. We can see that the cross-section does not depend on the orientation of the magnetic interaction vector.
Pertinence: 15%
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scattering vector. When Pi is parallel to Q, this leads to a π rotation of the incident polarisation. We can see that the cross-section does not necessarily depend on the orientation of the magnetic interaction
Pertinence: 15%
