dynamic mutual inductance - vertaling naar russisch
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dynamic mutual inductance - vertaling naar russisch

PROPERTY OF ELECTRICAL CONDUCTORS TO OPPOSE CHANGES IN CURRENT FLOW
Mutual inductance; Self inductance; Self-inductance; Magnetic self-induction; Electric self-induction; Magnetic mutual induction; Electric mutual induction; Magnetoelectric induction; Mutual Inductance; Electrical inductance; Mutual induction; Neumann formula; Coefficient of coupling; Self Inductance; Mutual inductor; Electric inductance; Coupled inductors; Inductance with physical symmetry; Inductance/derivation of self inductance; Orders of magnitude (inductance); Coupling coefficient (inductors); Derivation of self inductance
  • ''T'' equivalent circuit of mutually coupled inductors
  • ''π'' equivalent circuit of coupled inductors
  • ferromagnetic core]] . "n:m" shows the ratio between the number of windings of the left inductor to windings of the right inductor. This picture also shows the [[dot convention]].
  • The voltage ''(<math>v</math>, blue)'' and current ''(<math>i</math>, red)'' waveforms in an ideal inductor to which an alternating current has been applied. The current lags the voltage by 90°

dynamic mutual inductance      

общая лексика

динамическая взаимная индуктивность

mutual inductance         

общая лексика

взаимная индуктивность

электроника

взаимоиндукция

inductance         
inductance noun electr. индуктивность; (само)индукция

Definitie

Inductance
The property of a circuit in virtue of which it exercises induction and develops lines of force. It is defined variously. As clear and satisfactory a definition as any is the following, due to Sumpner and Fleming: Inductance is the ratio between the total induction through a circuit to the current producing it. "Thus taking a simple helix of five turns carrying a current of two units, and assuming that 1,000 lines of force passed through the central turn, of which owing to leakage only 900 thread the next adjacent on each side, and again only 800 through the end turns, there would be 800 + 900 + 1000 + 900 + 800, or 4,400 linkages of lines with the wire, and this being with 2 units of current, there would be 2,200 linkages with unit current, and consequently the self-inductance of the helix would be 2,200 centimetres." (Kennelly.) Inductance, as regards its dimensions is usually reduced to a length, hence the last word of the preceding quotation. The practical unit of inductance is termed the henry, from Prof. Joseph Henry; the secohm, or the quad or quadrant. The latter alludes to the quadrant of the earth, the value in length of the unit in question. [Transcriber's note: (L (di/dt) = V). A current changing at the rate of one ampere per second through a one henry inductance produces one volt. A sinusoidal current produces a voltage 90 degrees ahead of the current, a cosine (the derivative of sine is cosine). One volt across one henry causes the current to increase at one ampere per second.]

Wikipedia

Inductance

Inductance is the tendency of an electrical conductor to oppose a change in the electric current flowing through it. The flow of electric current creates a magnetic field around the conductor. The field strength depends on the magnitude of the current, and follows any changes in current. From Faraday's law of induction, any change in magnetic field through a circuit induces an electromotive force (EMF) (voltage) in the conductors, a process known as electromagnetic induction. This induced voltage created by the changing current has the effect of opposing the change in current. This is stated by Lenz's law, and the voltage is called back EMF.

Inductance is defined as the ratio of the induced voltage to the rate of change of current causing it. It is a proportionality factor that depends on the geometry of circuit conductors and the magnetic permeability of nearby materials. An electronic component designed to add inductance to a circuit is called an inductor. It typically consists of a coil or helix of wire.

The term inductance was coined by Oliver Heaviside in May 1884. It is customary to use the symbol L {\displaystyle L} for inductance, in honour of the physicist Heinrich Lenz. In the SI system, the unit of inductance is the henry (H), which is the amount of inductance that causes a voltage of one volt, when the current is changing at a rate of one ampere per second. It is named for Joseph Henry, who discovered inductance independently of Faraday.

Vertaling van &#39dynamic mutual inductance&#39 naar Russisch