7. An inductive load is shared by two identical synchronous generators A and B equally, if the excitation of alternator A is increased. (a) Alternator A will deliver more current and alternator B will deliver less current. (b) Alternator B will deliver more current and alternator A will deliver less current. (c) both will continue to deliver same current. (d) both will deliver more current.
7. An inductive load is shared by two identical synchronous generators A and B equally, if the excitation of alternator A is increased. (a) Alternator A will deliver more current and alternator B will deliver less current. (b) Alternator B will deliver more current and alternator A will deliver less current. (c) both will continue to deliver same current. (d) both will deliver more current.
Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter31: Three-phase Alternators
Section: Chapter Questions
Problem 5RQ: Assume that Alternator A is supplying power to a load and that Alternator B is to be paralleled to...
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![7. An inductive load is shared by two identical synchronous generators A and Bequally, if the excitation of
alternator A is increased.
(a) Alternator A will deliver more current and alternator B will deliver less current.
(b) Alternator B will deliver more current and alternator A will deliver less current.
(c) both will continue to deliver same current.
(d) both will deliver more current.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8a9382b5-cf95-4540-8308-98bed9a5d31b%2Ffe86a863-343f-46bf-89ff-7f0d2f65cee6%2Fm0t092_processed.png&w=3840&q=75)
Transcribed Image Text:7. An inductive load is shared by two identical synchronous generators A and Bequally, if the excitation of
alternator A is increased.
(a) Alternator A will deliver more current and alternator B will deliver less current.
(b) Alternator B will deliver more current and alternator A will deliver less current.
(c) both will continue to deliver same current.
(d) both will deliver more current.
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