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The circuit diagram of a common emitter amplifier using a silicon transistor with hfe = 100 is shown in the above figure. It is transistor with hfe = 100 is shown in the above figure. It is operated at VCE = 8V, I= 2mA ; RL = 11K Ω . In this circuit R3 (in KΩ) will be ___________ ?


Correct answer is '365'. Can you explain this answer?
Verified Answer
The circuit diagram of a common emitter amplifier using a silicon tran...
365



from (1) we get

Vcc = 22 + 8 = 30V

Putting the value of Vcc in equation we get



Thus answer is RB = 365KΩ
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The circuit diagram of a common emitter amplifier using a silicon transistor with hfe = 100 is shown in the above figure. It is transistor with hfe = 100 is shown in the above figure. It is operated at VCE = 8V, Ic= 2mA ; RL = 11K Ω . In this circuitR3 (in KΩ) will be ___________ ?Correct answer is '365'. Can you explain this answer?
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The circuit diagram of a common emitter amplifier using a silicon transistor with hfe = 100 is shown in the above figure. It is transistor with hfe = 100 is shown in the above figure. It is operated at VCE = 8V, Ic= 2mA ; RL = 11K Ω . In this circuitR3 (in KΩ) will be ___________ ?Correct answer is '365'. Can you explain this answer? for GATE 2024 is part of GATE preparation. The Question and answers have been prepared according to the GATE exam syllabus. Information about The circuit diagram of a common emitter amplifier using a silicon transistor with hfe = 100 is shown in the above figure. It is transistor with hfe = 100 is shown in the above figure. It is operated at VCE = 8V, Ic= 2mA ; RL = 11K Ω . In this circuitR3 (in KΩ) will be ___________ ?Correct answer is '365'. Can you explain this answer? covers all topics & solutions for GATE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The circuit diagram of a common emitter amplifier using a silicon transistor with hfe = 100 is shown in the above figure. It is transistor with hfe = 100 is shown in the above figure. It is operated at VCE = 8V, Ic= 2mA ; RL = 11K Ω . In this circuitR3 (in KΩ) will be ___________ ?Correct answer is '365'. Can you explain this answer?.
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