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This section includes 10 Mcqs, each offering curated multiple-choice questions to sharpen your Network Theory Questions and Answers knowledge and support exam preparation. Choose a topic below to get started.
1. |
A symmetrical star connected system has VRN = 230∠0⁰. The phase sequence is RYB. Find VBR. |
A. | 398.37∠210⁰ |
B. | 398.37∠-210⁰ |
C. | 398.37∠120⁰ |
D. | 398.37∠-120⁰ |
Answer» C. 398.37∠120⁰ | |
2. |
A symmetrical star connected system has VRN = 230∠0⁰. The phase sequence is RYB. Find VYB. |
A. | 398.37∠-30⁰ |
B. | 398.37∠210⁰ |
C. | 398.37∠90⁰ |
D. | 398.37∠-90⁰ |
Answer» E. | |
3. |
A symmetrical star connected system has VRN = 230∠0⁰. The phase sequence is RYB. Find VRY. |
A. | 398.37∠30⁰ |
B. | 398.37∠-30⁰ |
C. | 398.37∠90⁰ |
D. | 398.37∠-90⁰ |
Answer» B. 398.37∠-30⁰ | |
4. |
The voltages, VBR ,Vph are related in star connected system is? |
A. | VBR = 3Vph |
B. | VBR = 3√3Vph |
C. | VBR = √3Vph |
D. | VBR = Vph |
Answer» D. VBR = Vph | |
5. |
In a star connected system, the relation between VYB, Vph is? |
A. | VYB = Vph |
B. | VYB = 3√3Vph |
C. | VYB = 3Vph |
D. | VYB = √3Vph |
Answer» E. | |
6. |
The relation between VRY, Vph in a star connected system is? |
A. | VRY = Vph |
B. | VRY = √3Vph |
C. | VRY = 3√3Vph |
D. | VRY = 3Vph |
Answer» C. VRY = 3√3Vph | |
7. |
In a star connected system, the phasors VRN, VYN are ____ apart. |
A. | 15⁰ |
B. | 30⁰ |
C. | 45⁰ |
D. | 60⁰ |
Answer» E. | |
8. |
The relation between the lengths of the phasors VRN and – VYN is? |
A. | |VRN| > – |VYN| |
B. | |VRN| < – |VYN| |
C. | |VRN| = – |VYN| |
D. | |VRN| >= – |VYN| |
Answer» D. |VRN| >= – |VYN| | |
9. |
In three phase system, the line voltage VRY is equal to? |
A. | phasor sum of VRN and VNY |
B. | phasor difference of VRN and VNY |
C. | phasor sum of VRN and VNY |
D. | algebraic sum of VRN and VNY |
Answer» B. phasor difference of VRN and VNY | |
10. |
In star connected system, VRY is equal to? |
A. | VYR |
B. | -VYR |
C. | 2VYR |
D. | 3VYR |
Answer» C. 2VYR | |