Engineering Electrical Machines - II : UNIT I :Synchronous Generator : Anna University Questions with Answers (Long Answered Questions)
University Questions with Answers (Long Answered Questions)
Regulation
2008
Dec.-11
Q.
1 Derive the e.m.f equation of an alternator. Explain the pitch factor and distribution
factor.
(Section
1.12) [12]
Q.
2 Explain the effect of harmonics on induced e.m.f. and winding factors of an
alternator.
(Section
1.14) [8]
May-12
Q.3
List the advantages of stationary armature in synchronous machines. (Section
1.3) [2]
Dec.-12
Q.
4 Give the constructional details of two types of alternators. (Section 1.6) [8]
Q.
5 Derive the e.m.f. equation of an alternator. Explain the pitch factor and
distribution factor.
(Section
1.12) [12]
Q.
6 Explain the effect of harmonics on induced e.m.f. and winding factors of an
alternator.
(Section
1.14) [8]
Dec.-13
Q.7
Derive the e.m.f. equation of an alternator. Explain the pitch factor and
distribution factor.
(Section
1.12) [12]
Dec.-14
Q.8
Derive the e.m.f. equation of an alternator. Explain the pitch factor and
distribution factor. (Section 1.12) [12]
Q.9
Give the constructional details of two types of alternators. (Section 1.6) [8]
(Regulation
2013)
Dec.-15
Q.10
Derive the emf equation of an alternator. (Section 1.12) [8]
Dec.-16
Q.11
Describe with neat sketches, the constructional details of a salient pole type
alternator. (Section 1.6.1) [10]
Q.12
Derive the emf equation of an alternator. (Section 1.12) [6]
Dec.-17
Q.13
Derive the EMF equation of a 3-phase synchronous machine, (section 1.12 [6]
May-18
Q.
14 Describe the principle and construction of slow speed operation generator
with neat diagram. (Section 1.4) [13]
Electrical Machines II: UNIT I: a. Synchronous Generator : Tag: Engineering Electrical Machines - II : Synchronous Generator | Electrical Machines - University Questions with Answers (Long Answered Questions)
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