III. On the electric effect of rotating a dielectric in a magnetic field
H. A. Wilson
Abstract
H. A. Wilson
Abstract
Abstract It was shown by Faraday in 1831 that an electromotive force is induced in a conductor moving in a magnetic field so as to cut the lines of magnetic force. The object of the experiments described in the present paper was to see if a similar effect exists in a dielectric when it moves in a magnetic field, and to measure the amount of the effect if it were found to exist. According to Maxwell’s electrodynamic theory, as developed by H. A. Lorentz and by Larmor, such an electromotive force should be produced in a dielectric, and should be equal to the electromotive force in a conductor multiplied by the factor 1 — K-1, where K is the specific inductive capacity of the dielectric.
OpenAlex reports 46 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract It was shown by Faraday in 1831 that an electromotive force is induced in a conductor moving in a magnetic field so as to cut the lines of magnetic force. The object of the experiments described in the present paper was to see if a similar effect exists in a dielectric when it moves in a magnetic field, and to measure the amount of the effect if it were found to exist. According to Maxwell’s electrodynamic theory, as developed by H. A. Lorentz and by Larmor, such an electromotive force should be produced in a dielectric, and should be equal to the electromotive force in a conductor multiplied by the factor 1 — K-1, where K is the specific inductive capacity of the dielectric.
Key concepts: Electromotive force, Lorentz force, Magnetic field, Dielectric, Condensed matter physics, Physics, Conductor, Faraday cage