dynamic resistance - vertaling naar russisch
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dynamic resistance - vertaling naar russisch

THE PROPERTY THAT AN INCREASING VOLTAGE RESULTS IN A DECREASING CURRENT
Negative differential resistance; Negative dynamic resistance; Negative Resistance; Negative differential conductivity; Negative-resistance circuits; Negative Differential Resistance; Negative impedance; Negative Impedance; Negative-resistance amplifier; Reflection amplifier
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  • battery]] has negative static resistance<ref name="Simpson" /><ref name="Simin" /><ref name="Baker" /> (red) over its normal operating range, but positive differential resistance.
  • KVL]], the static resistance of a power source (''R''<sub>S</sub>), such as a battery, is always equal to the negative of the static resistance of its load (''R''<sub>L</sub>).<ref name="Morecroft" /><ref name="Deliyannis" />
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  • An ''I–V'' curve, showing the difference between static resistance ''(inverse slope of line B)'' and differential resistance ''(inverse slope of line C)'' at a point ''(A)''.
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  • impedance]] (AC resistance) to the circuit to counteract the negative resistance of the tube, limiting the current.<ref name="Sinclair" />
  • A [[Gunn diode]], a [[semiconductor device]] with negative differential resistance used in [[electronic oscillator]]s to generate [[microwave]]s
  • oscillator]] consisting of a [[Gunn diode]] inside a [[cavity resonator]]. The negative resistance of the diode excites [[microwave]] oscillations in the cavity, which radiate through the aperture into a [[waveguide]] ''(not shown)''.
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  • An example of an amplifier with positive feedback that has negative resistance at its input. The input current '''''i''''' is
<br />
<math>i = \frac{v - Av}{R_1} + \frac{v}{R_\text{in}}</math>
<br />
so the input resistance is
<br />
<math>R = \frac{v}{i} = \frac{R_1}{1 + R_1/R_\text{in} - A}.</math>
<br />
If <math>A > 1 + R_1/R_\text{in} </math> it will have negative input resistance.
  • (<math>X_\text{L},\;X_\text{N}</math>)}}
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  • load line]]s.<br />
''DCL'': DC load line, which sets the Q point.<br />
''SSL'': negative resistance during startup while amplitude is small. Since <math>r\;<\;R</math> poles are in RHP and amplitude of oscillations increases.<br />
''LSL'': large-signal load line. When the current swing approaches the edges of the negative resistance region ''<span style="color:green;">(green)</span>'', the sine wave peaks are distorted ("clipped") and <math>r</math> decreases until it equals <math>R</math>.
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  • archive-date = 6 September 2006 }}, [https://web.archive.org/web/20150726145426/http://inst.eecs.berkeley.edu/~ee100/fa08/lectures/EE100supplementary_notes_3.pdf archived]</ref> showing regions representing passive devices ''(white)'' and active devices ''(<span style="color:red;">red</span>)''
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dynamic resistance      

общая лексика

динамическое сопротивление

строительное дело

сопротивление динамическим воздействиям (силам)

dynamic resistance      
сопротивление динамическим воздействиям (силам)
resistance movement         
  • Ants "the Terrible" Kaljurand]], a famous Estonian freedom fighter and nazi-collaborator
  • A group of [[Afghan mujahideen]], who were considered to be freedom fighters by Western nations, October 1987
ORGANIZED EFFORT TO WITHSTAND A GOVERNMENT OR AN OCCUPYING POWER
Freedom fighter; Underground resistance movement; Resistance movements; Freedom Fighter; Resistance group; Resistance organization; Resistance fighter; Liberation armies; Khaadku; List of resistance movements; Liberation group; Muqawamah; Movement of resistance

политический термин

движение Сопротивления

Definitie

freedom fighter
(freedom fighters)
If you refer to someone as a freedom fighter, you mean that they belong to a group that is trying to change the government of their country using violent methods, and you agree with or approve of this.
N-COUNT [approval]

Wikipedia

Negative resistance

In electronics, negative resistance (NR) is a property of some electrical circuits and devices in which an increase in voltage across the device's terminals results in a decrease in electric current through it.

This is in contrast to an ordinary resistor in which an increase of applied voltage causes a proportional increase in current due to Ohm's law, resulting in a positive resistance. While a positive resistance consumes power from current passing through it, a negative resistance produces power. Under certain conditions it can increase the power of an electrical signal, amplifying it.

Negative resistance is an uncommon property which occurs in a few nonlinear electronic components. In a nonlinear device, two types of resistance can be defined: 'static' or 'absolute resistance', the ratio of voltage to current v / i {\displaystyle v/i} , and differential resistance, the ratio of a change in voltage to the resulting change in current Δ v / Δ i {\displaystyle \Delta v/\Delta i} . The term negative resistance means negative differential resistance (NDR), Δ v / Δ i < 0 {\displaystyle \Delta v/\Delta i<0} . In general, a negative differential resistance is a two-terminal component which can amplify, converting DC power applied to its terminals to AC output power to amplify an AC signal applied to the same terminals. They are used in electronic oscillators and amplifiers, particularly at microwave frequencies. Most microwave energy is produced with negative differential resistance devices. They can also have hysteresis and be bistable, and so are used in switching and memory circuits. Examples of devices with negative differential resistance are tunnel diodes, Gunn diodes, and gas discharge tubes such as neon lamps, and fluorescent lights. In addition, circuits containing amplifying devices such as transistors and op amps with positive feedback can have negative differential resistance. These are used in oscillators and active filters.

Because they are nonlinear, negative resistance devices have a more complicated behavior than the positive "ohmic" resistances usually encountered in electric circuits. Unlike most positive resistances, negative resistance varies depending on the voltage or current applied to the device, and negative resistance devices can only have negative resistance over a limited portion of their voltage or current range. Therefore, there is no real "negative resistor" analogous to a positive resistor, which has a constant negative resistance over an arbitrarily wide range of current.

Vertaling van &#39dynamic resistance&#39 naar Russisch