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- Q1256476 subject Q7463974.
- Q1256476 abstract "A rotating magnetic field is a magnetic field that has moving polarities in which its opposite poles rotate about a central point or axis. Ideally the rotation changes direction at a constant angular rate. This is a key principle in the operation of the alternating-current motor.Rotating magnetic fields are often utilized for electromechanical applications such as induction motors and electric generators. However, they are also used in purely electrical applications such as induction regulators.".
- Q1256476 thumbnail 3phase-rmf-noadd-60f-airopt.gif?width=300.
- Q1256476 wikiPageExternalLink 1981gnpn.conf..113P.
- Q1256476 wikiPageExternalLink NEETS.
- Q1256476 wikiPageExternalLink labz-frenkel.pdf.
- Q1256476 wikiPageExternalLink history004.html.
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- Q1256476 wikiPageExternalLink RSI-RMF-Tobin-paper.pdf.
- Q1256476 wikiPageExternalLink img89.htm.
- Q1256476 wikiPageExternalLink single_phase_m.htm.
- Q1256476 wikiPageExternalLink camporotante0.html.
- Q1256476 wikiPageExternalLink autosection3.htm.
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- Q1256476 wikiPageWikiLink Q7463974.
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- Q1256476 comment "A rotating magnetic field is a magnetic field that has moving polarities in which its opposite poles rotate about a central point or axis. Ideally the rotation changes direction at a constant angular rate. This is a key principle in the operation of the alternating-current motor.Rotating magnetic fields are often utilized for electromechanical applications such as induction motors and electric generators. However, they are also used in purely electrical applications such as induction regulators.".
- Q1256476 label "Rotating magnetic field".
- Q1256476 depiction 3phase-rmf-noadd-60f-airopt.gif.