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In a transistor, the emitter circuit res...

In a transistor, the emitter circuit resistance is `100 kOmega ` and the collector resistance is `100 Omega `. The power gain, if the emitter and collector currents are assumed to be equal, will be

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To find the power gain of the transistor given the emitter and collector circuit resistances, we can follow these steps: ### Step 1: Understand the parameters given We have: - Emitter circuit resistance, \( R_E = 100 \, k\Omega = 100,000 \, \Omega \) - Collector circuit resistance, \( R_C = 100 \, \Omega \) - We are assuming that the emitter current \( I_E \) is equal to the collector current \( I_C \). ...
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AAKASH SERIES-SEMICONDUCTOR DEVICES-EXAMPLES
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  2. Current amplification factor of a common base configuration is 0.88. F...

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  3. In a transistor, the emitter circuit resistance is 100 kOmega and the...

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  10. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  11. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  12. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  13. In a negative feedback amplifier ,the gain without feedback is 100,fee...

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  14. The Boolean expression of the output y in terms of the input A and B f...

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  17. The logic circuit and its truth table are given, what is the gate X in...

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