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A generator with the frequency-power characteristics shown in figure A is supplying a load. Now a second load is to be connected in parallel with the first one as shown in figure B. Load 1 consumes a real power of 1000 kW at 0.8 PF lagging, while load 2 consumes a real power of 800 kW at 0.707 PF lagging. The operating frequencies of the system before and after the second load is connected are respectivelya)60 Hz, 61 Hzb)61 Hz, 60 Hzc)60 Hz, 60 Hzd)60 Hz, 59.2 HzCorrect answer is option 'D'. Can you explain this answer? for Electrical Engineering (EE) 2025 is part of Electrical Engineering (EE) preparation. The Question and answers have been prepared
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the Electrical Engineering (EE) exam syllabus. Information about A generator with the frequency-power characteristics shown in figure A is supplying a load. Now a second load is to be connected in parallel with the first one as shown in figure B. Load 1 consumes a real power of 1000 kW at 0.8 PF lagging, while load 2 consumes a real power of 800 kW at 0.707 PF lagging. The operating frequencies of the system before and after the second load is connected are respectivelya)60 Hz, 61 Hzb)61 Hz, 60 Hzc)60 Hz, 60 Hzd)60 Hz, 59.2 HzCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for Electrical Engineering (EE) 2025 Exam.
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Here you can find the meaning of A generator with the frequency-power characteristics shown in figure A is supplying a load. Now a second load is to be connected in parallel with the first one as shown in figure B. Load 1 consumes a real power of 1000 kW at 0.8 PF lagging, while load 2 consumes a real power of 800 kW at 0.707 PF lagging. The operating frequencies of the system before and after the second load is connected are respectivelya)60 Hz, 61 Hzb)61 Hz, 60 Hzc)60 Hz, 60 Hzd)60 Hz, 59.2 HzCorrect answer is option 'D'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
A generator with the frequency-power characteristics shown in figure A is supplying a load. Now a second load is to be connected in parallel with the first one as shown in figure B. Load 1 consumes a real power of 1000 kW at 0.8 PF lagging, while load 2 consumes a real power of 800 kW at 0.707 PF lagging. The operating frequencies of the system before and after the second load is connected are respectivelya)60 Hz, 61 Hzb)61 Hz, 60 Hzc)60 Hz, 60 Hzd)60 Hz, 59.2 HzCorrect answer is option 'D'. Can you explain this answer?, a detailed solution for A generator with the frequency-power characteristics shown in figure A is supplying a load. Now a second load is to be connected in parallel with the first one as shown in figure B. Load 1 consumes a real power of 1000 kW at 0.8 PF lagging, while load 2 consumes a real power of 800 kW at 0.707 PF lagging. The operating frequencies of the system before and after the second load is connected are respectivelya)60 Hz, 61 Hzb)61 Hz, 60 Hzc)60 Hz, 60 Hzd)60 Hz, 59.2 HzCorrect answer is option 'D'. Can you explain this answer? has been provided alongside types of A generator with the frequency-power characteristics shown in figure A is supplying a load. Now a second load is to be connected in parallel with the first one as shown in figure B. Load 1 consumes a real power of 1000 kW at 0.8 PF lagging, while load 2 consumes a real power of 800 kW at 0.707 PF lagging. The operating frequencies of the system before and after the second load is connected are respectivelya)60 Hz, 61 Hzb)61 Hz, 60 Hzc)60 Hz, 60 Hzd)60 Hz, 59.2 HzCorrect answer is option 'D'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice A generator with the frequency-power characteristics shown in figure A is supplying a load. Now a second load is to be connected in parallel with the first one as shown in figure B. Load 1 consumes a real power of 1000 kW at 0.8 PF lagging, while load 2 consumes a real power of 800 kW at 0.707 PF lagging. The operating frequencies of the system before and after the second load is connected are respectivelya)60 Hz, 61 Hzb)61 Hz, 60 Hzc)60 Hz, 60 Hzd)60 Hz, 59.2 HzCorrect answer is option 'D'. Can you explain this answer? tests, examples and also practice Electrical Engineering (EE) tests.