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The first calculation part relies on spherical isotropy to solve the problem in the radial component.
The fields of both Jupiter and Earth are mainly dipolar — the radial component of the field is mostly positive in the northern hemisphere and mostly negative in the southern hemisphere, as if the planet contained a bar magnet (Fig. 1a).
The position of the field coils is such that the outwardly directed or radial component of the magnetic field produced in the air gap to the stator is approximately sinusoidally distributed around the periphery of the rotor.
The effect of hydraulic force on a curved surface is composed of two orthogonally directed force components (vectors), namely, the longitudinal component acting in the base-apex direction, and the radial component acting orthogonally to the longitudinal component (Fig. 4).
It appears that a forward sweep decreases the radial component of the velocity whereas a backward sweep increases this component.
The ratio of the horizontal radial component to the horizontal tangential component of the outlet velocity is also established analytically.
The theoretical results showed that a radial component of the magnetic field also changed the natural sloshing frequency.
The radial component is relatively short.
Similar dispersion is not evident for the radial component.
where the subscript r denotes the radial component.
Column (a) depicts the images of the radial component.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com