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  Cornell University

MAE Publications and Papers

Sibley School of Mechanical and Aerospace Engineering

New article: A Thick-Walled Sphere Rotating in a Uniform Magnetic Field: The next step to de-spin a space object

Article:  Nurge, MA; Youngquist, RC; Caracciolo, RA; Peck, M; Leve, FA; “A Thick-Walled Sphere Rotating in a Uniform Magnetic Field: The next step to de-spin a space object”, American Journal of Physics, 85 (8):596-610

DOI

Abstract:  Modeling the interaction between a moving conductor and a static magnetic field is critical to understanding the operation of induction motors, eddy current braking, and the dynamics of satellites moving through Earth’s magnetic field. Here, we develop the case of a thick-walled sphere rotating in a uniform magnetic field, which is the simplest, non-trivial, magneto-statics problem that leads to complete closed-form expressions for the resulting potentials, fields, and currents. This solution requires knowledge of all of Maxwell’s time independent equations, scalar and vector potential equations, and the Lorentz force law. The paper presents four cases and their associated experimental results, making this topic appropriate for an advanced student lab project. (C) 2017 American Association of Physics Teachers.

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