two phase current - ترجمة إلى اليونانية
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two phase current - ترجمة إلى اليونانية

Two-phase power; Two phase electric power; 2 phase power

two phase current      
διφασικό ρεύμα
electric current         
  • symbol]] for a battery in a [[circuit diagram]].
  • Alternating electric current flows through the solenoid, producing a changing magnetic field. This field causes an electric current to flow in the wire loop by [[electromagnetic induction]].
  • Magnetic field is produced by an electric current in a [[solenoid]].
  • A [[proton conductor]] in a static [[electric field]].
FLOW OF ELECTRIC CHARGE (FOR SPECIFIC QUANTITIES SEE Q29996 OR Q234072)
Amperage; Electrical current; Conventional current; Electric Current; Electrical Current; Electric polarity; Electrical Polarity; Current (electric); Electric currents; Electric conduction; Electrical conduction in gases; Current (electricity); Electron current; AC/DC (electrical); Electrical polarity; Ion flow; Current electricity; Current (electrical); Dynamic electricity; Conduction current; Conventional current flow; AC/DC (electricity); Electric current intensity; DC polarity; Reverse polarity; + pole; Plus pole; Minus pole; − pole; - pole; Electron flow; Positive (electrical polarity); Negative (electrical polarity); Electric current measurement
ηλεκτρικό ρεύμα
current assets         
AN ASSET WHICH CAN EITHER BE CONVERTED TO CASH OR USED TO PAY CURRENT LIABILITIES WITHIN 12 MONTHS
Current assets; Current Asset
κυκλοφορούν ενεργητικό

تعريف

Two-phase
·add. ·noun ·Alt. of Two-phaser.

ويكيبيديا

Two-phase electric power

Two-phase electrical power was an early 20th-century polyphase alternating current electric power distribution system. Two circuits were used, with voltage phases differing by one-quarter of a cycle, 90°. Usually circuits used four wires, two for each phase. Less frequently, three wires were used, with a common wire with a larger-diameter conductor. Some early two-phase generators had two complete rotor and field assemblies, with windings physically offset to provide two-phase power. The generators at Niagara Falls installed in 1895 were the largest generators in the world at that time, and were two-phase machines. Three-phase systems eventually replaced the original two-phase power systems for power transmission and utilization. Active two-phase distribution systems remain in Center City Philadelphia, where many commercial buildings are permanently wired for two-phase, and in Hartford, Connecticut.