series connection - translation to russian
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series connection - translation to russian

THE TWO BASIC WAYS OF CONNECTING THE COMPONENTS OF AN ELECTRICAL CIRCUIT
Series circuit; Parallel circuit; Series and parallel curcuits; Parallel (electronics); Parallel curcuit; Series connection; Parallel connection; Parallel wiring; Series wiring; Parallel circuits; Series circuits; Series curcuit; Series curcuits; Series and parallel circuit; Series (circuit); In series; In parallel; Series resistance; Series-coupled cell; Parallel-coupled cell; Capacitors in series; Capacitors in parallel; Inductors in series; Inductors in parallel; Series & parallel circuits; Series circuits information; Resistances in Parallel; In Parallel; R1 series R2; R₁ series R₂; R1 + R2; R₁ + R₂; R1+R2; R₁+R₂; L1 series L2; L₁ series L₂; L1 + L2; L₁ + L₂; L1+L2; L₁+L₂; Z1 series Z2; Z₁ series Z₂; Z1 + Z2; Z₁ + Z₂; Z1+Z2; Z₁+Z₂; C1 series C2; C₁ series C₂; C1 parallel C2; C₁ parallel C₂; C1 ∥ C2; C₁ ∥ C₂; C1∥C2; C₁∥C₂; C1 + C2; C₁ + C₂; C1+C2; C₁+C₂; G1 series G2; G₁ series G₂; G1 + G2; G₁ + G₂; G1+G2; G₁+G₂; G1 parallel G2; G₁ parallel G₂; G1 ∥ G2; G₁ ∥ G₂; G1∥G2; G₁∥G₂; B1 series B2; B₁ series B₂; B1 + B2; B₁ + B₂; B1+B2; B₁+B₂; X1 series X2; X₁ series X₂; X1 + X2; X₁ + X₂; X1+X2; X₁+X₂; Y1 series Y2; Y₁ series Y₂; Y1 + Y2; Y₁ + Y₂; Y1+Y2; Y₁+Y₂; B1 parallel B2; B₁ parallel B₂; B1 ∥ B2; B₁ ∥ B₂; B1∥B2; B₁∥B₂; Y1 parallel Y2; Y₁ parallel Y₂; Y1 ∥ Y2; Y₁ ∥ Y₂; Y1∥Y2; Y₁∥Y₂; Parallel and series circuits; Series (electronics)
  • A diagram of several capacitors, side by side, both leads of each connected to the same wires.
  • A diagram of several capacitors, connected end to end, with the same amount of current going through each.
  • A diagram of several inductors, side by side, both leads of each connected to the same wires.
  • A diagram of several inductors, connected end to end, with the same amount of current going through each.
  • A diagram of several resistors, side by side, both leads of each connected to the same wires.
  • This is a diagram of several resistors, connected end to end, with the same amount of current through each.
  • A series circuit with a [[voltage source]] (such as a battery, or in this case a cell) and three resistance units

series connection         

общая лексика

последовательное включение

строительное дело

последовательное соединение

series connection         
последовательное соединение
series connection         
последовательное соединение

Definition

дрифт
муж., мор. конец борта при окончании шканец, юта и бака.
| Разность между толщиной болта и размером дыры или гнезда его: простор, зазор.

Wikipedia

Series and parallel circuits

Two-terminal components and electrical networks can be connected in series or parallel. The resulting electrical network will have two terminals, and itself can participate in a series or parallel topology. Whether a two-terminal "object" is an electrical component (e.g. a resistor) or an electrical network (e.g. resistors in series) is a matter of perspective. This article will use "component" to refer to a two-terminal "object" that participate in the series/parallel networks.

Components connected in series are connected along a single "electrical path", and each component has the same electric current through it, equal to the current through the network. The voltage across the network is equal to the sum of the voltages across each component.

Components connected in parallel are connected along multiple paths, and each component has the same voltage across it, equal to the voltage across the network. The current through the network is equal to the sum of the currents through each component.

The two preceding statements are equivalent, except for exchanging the role of voltage and current.

A circuit composed solely of components connected in series is known as a series circuit; likewise, one connected completely in parallel is known as a parallel circuit. Many circuits can be analyzed as a combination of series and parallel circuits, along with other configurations.

In a series circuit, the current that flows through each of the components is the same, and the voltage across the circuit is the sum of the individual voltage drops across each component. In a parallel circuit, the voltage across each of the components is the same, and the total current is the sum of the currents flowing through each component.

Consider a very simple circuit consisting of four light bulbs and a 12-volt automotive battery. If a wire joins the battery to one bulb, to the next bulb, to the next bulb, to the next bulb, then back to the battery in one continuous loop, the bulbs are said to be in series. If each bulb is wired to the battery in a separate loop, the bulbs are said to be in parallel. If the four light bulbs are connected in series, the same current flows through all of them and the voltage drop is 3 volts across each bulb, which may not be sufficient to make them glow. If the light bulbs are connected in parallel, the currents through the light bulbs combine to form the current in the battery, while the voltage drop is 12 volts across each bulb and they all glow.

In a series circuit, every device must function for the circuit to be complete. If one bulb burns out in a series circuit, the entire circuit is broken. In parallel circuits, each light bulb has its own circuit, so all but one light could be burned out, and the last one will still function.

What is the Russian for series connection? Translation of &#39series connection&#39 to Russian