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top left is 3 center left is 7 center is 4 center right is 1 top right is 2 bottom left is 6 bottom right is 5

Q: What is the answer for power line phase 1 level 8?

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left 65

42 5 631

361 left36 21 4 5Power lines phase 1 level 6

down 4531 across 256

3 at the very top 6 at the left corner 7 at the right corner 8 and 4 on the middle left 9 and 1 on the middle right.

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Helpful. What you call "power lines 1 level 6", it has to make 10 and there are six powercells. What you call "power lines 2 level 7" is has to make 21 and there are more than six which is 9 powerce.

Power = Current * Voltage * Power FactorAbove expression can further be explore as :1. For DC CircuitsPower = Current * Voltage2. For Single Phase AC CircuitPower = Current * Voltage * Power Factor3. For Three Phase AC CircuitPower = Line Current * Line Voltage * Power Factor

Power = Current * Voltage * Power FactorAbove expression can further be explore as :1. For DC CircuitsPower = Current * Voltage2. For Single Phase AC CircuitPower = Current * Voltage * Power Factor3. For Three Phase AC CircuitPower = Line Current * Line Voltage * Power Factor

across: 4,3,5 down: 6,3,2,1 hope it works

Yes, if the power factor (cosine of the phase-angle between voltage and current)is ' 1 '. In order for that to be true, the total load impedances on the line have tobe pure resistive, with zero reactance.All of this stuff applies only on an AC line. On a DC line, voltage and current arealways in phase, the power factor is 1, and KVA = KW .

With a three-phase system the voltage quoted is the line-to-line voltage between any two live lines. To find the line-to-neutral voltage divide by 1.732 which is sqrt(3). The power supplied from each phase is the current times the line-to-neutral voltage (times the power factor if less than 1). To find the total power when the currents are equal, multiply by 3.

Negative sequence current is defined as 3I2 = (phase 1)*(1angle 0) + (phase 2)*(1angle 240) + (phase 3)*(1angle 120) Negative sequence current is seen in three phase power systems due to natural system imbalance. Also during unbalanced fault conditions such as line to line, Line to ground, and line to line to ground faults. It is not seen in purely balanced three phase faults.

1 3 6 4 2 5 7

Power factor is well defined and measures the difference between the phase of current and voltage. It varies from 1 to zero with 1 being associated with a pure resistive load. Since you multiply voltage times current to compute instantaneous power; if they are out of phase then you get reduced power. A power booster, in this context, would be a device that was designed to compensate for the our of phase situation and bring the phases more in line, effectively boosting power.

Well The answer is across is 6, 5, 2, and Down Is 3, 5, 4, 1 Then press next level and there you are! :D

Yes.But more than that, it would require s separate line from the power company. Three phase power is not normally available in residential areas.Choices;Pay the power company to a install a dedicated transformer and bring a line in from the nearest 3 phase circuit. Very ExpensiveBuy a Phase Converter. ExpensiveRent a warehouse that has 3 Phase. Not CheepSell the 3 phase equipment on eBay and buy single phase. Best Bet