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Ampere-turn - Wikipedia, the free encyclopedia
The ampere-turn (At) is the SI unit of magnetomotive force (MMF), represented by a direct current of one ampere flowing in a single-turn loop in a vacuum. "Turns" refers to the winding number of an ...
en.wikipedia.org/wiki/Ampere-turn |
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perform conversions between ampere turn and other magnetomotive force units ... Ampere Turn, unit of measure ... To perform conversions between ampere turn and other Magnetomotive Force units please try our Magnetomotive Force Unit Converter; Convert ampere turn to: kiloampere turn, milliampere turn, abampere turn, gilbert;
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(1) This unit is shown with the dimensions of the "magnetomotive-force" quantity in the SI system of units. There are other systems of units used for electromagnetic calculations and they may assign different dimensions to this quantity. ... ampere-turn; (convert ampere-turn to new units)
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Convert Magnetic field strength Ampere-turn per metre.
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ampere-turns explaination? General Physics discussion ... The ampere-turn is the unit for measuring the magnetomotive force of a current-carrying coil. In a formula, the magnetomotive force in ampere-turns can be expressed as: F = NI; F = magnetomotive force in ampere-turns;
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Ampere-turn - Definition of Ampere-turn at Dictionary.com a free online dictionary with pronunciation, synonyms, and translation of Ampere-turn. Look it up now! ... Use ampere-turn in a Sentence...
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The term ampere-turn is applied to winding dynamos and electrical instruments. The magnetising effort of a coil carrying a steady electric current depends on the product of the number of the compl... ... The term " ampere-turn " is applied to winding dynamos and electrical instruments.
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I wrote in many threads that this magnet can design through ampere turn furmula. Anybody can help me to knowing ampere turen formula for design the magnet on 220V DC, 50Hz. Thanks, Paremji;
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I wrote in many threads that this magnet can design through ampere turn furmula. Anybody can help me to knowing ampere turen formula for design the magnet on 220V DC, 50Hz. Thanks, Paremji;
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Because of the axial unbalance ampere-turns, this impedance is very high. The currents induced in the tertiary winding 24 supply the necessary ampere turns which produce radial and axial balance in accordance with the invention, this current being illustrated in FIG.
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