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Figure 5 illustrates the ZFC/FC magnetization for magnetic fields applied parallel and perpendicular to the film surface.
We carried out parameter surveys of the magnetic fields applied to the HTS-SMES magnets, the elemental coil shapes of the magnets and the number of the elemental coils, and studied a suitable magnet dimension.
Samples were fabricated under the influence of electric and magnetic fields applied simultaneously.
The external magnetic fields applied to these systems are an important factor that influences the dynamics (including quantum) of DW structural inhomogeneities.
Estimation of (15) at σ 0 ~ 1 ergives gives h x > > 10− 4 that is consistent with the requirement for planar magnetic fields applied to DW.
Magnetic fields applied perpendicularly to the sample cause the thermal conductivity to decrease significantly, but the influence of the magnetic fields becomes weak when temperature increases.
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7 8 T of the maximum magnetic field applied to the magnet and a large number of elemental coils are suitable for a 3.6 MJ HTS magnet.
This paper focuses on the mechanism of propulsion of a Purcell swimmer whose segments are magnetized and react to an external magnetic field applied into the fluid.
This would instruct the robots to follow, say, a light source or magnetic field applied from outside the body.
The dependence of the maximum zero-voltage current on the magnetic field applied to a junction between two superconductors is shown in Figure 3.
Heinrich Barkhausen, a German physicist, discovered in 1919 that a slow, smooth increase of a magnetic field applied to a piece of ferromagnetic material, such as iron, causes it to become magnetized, not continuously but in minute steps.
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