
Three-phase basics

Quiz
•
Physics
•
University
•
Hard
Used 7+ times
FREE Resource
8 questions
Show all answers
1.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
In a DELTA connected balanced load, which relationship is true:
VP = √3 VL
IL = IP
IP = √3 IL
VL = VP
2.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
In a STAR connected balanced load, which relationship is correct:
IL = 3 IP
VP = VL ÷ √3
IP x √3 = IL
VL = VP ÷ √3
3.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
The line current drawn by a balanced three-phase load is given by:
IP = P ÷ (3 VP cos Φ)
IL = P ÷ (3 VL cos Φ)
IL = P ÷ (√3 VL cos Φ)
IL = P ÷ ( VL cos Φ)
4.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
If the RMS line voltage in a three-phase four-wire system is 11,000 V:
the RMS voltage between any two LINE conductors is approximately 6351 V
the peak line voltage is 31.11 kV
the line-to-neutral RMS voltage is 11,000 V
the peak-to-peak phase voltage is approximately 17.96 kV
5.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
The line currents in a three-phase load are:
(2∠0∘) A, (2∠-120∘) A and (2∠120∘) A. Which statement about the loads is correct?
The loads are resistive and inductive.
The loads are resistive and capacitive.
The loads are resistive and unbalanced.
The loads are resistive and balanced.
6.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
The line currents in a three-phase four-wire load are:
(2∠0∘) A, (2∠-90∘) A and (2∠90∘) A. Which statement below is correct?
The loads are balanced.
The power factor is 0.866 in each load.
The neutral current is zero.
The neutral current is (2∠0∘) A.
7.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
A three-phase motor is connected in delta to a three-wire 400 V supply. It draws a line current of 18.76 A and absorbs 12 kW. Select the correct statement:
The reactive power absorbed is 5 kVAr.
The reactive power absorbed is 13 kVAr.
The apparent power developed is 7504 VA.
The active power = the reactive power.
8.
MULTIPLE CHOICE QUESTION
2 mins • 1 pt
Select the correct statement regarding a three-phase delta-connected unbalanced load.
The line currents will be equal in magnitude.
The phase currents will be equal in magnitude.
The line currents will be unequal in magnitude.
The phase voltages will be unequal in magnitude.
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