In a transistor, Ic = 100 mA and If = 100.2 mA. The value of ß is . 1. 100 2. 50 3. about 1 4. 200 In a transistor if ß = 100 and collector current is 10 mA, then Ig is 1. 100 mA 2. 100.1 mA 3. 110 mA 4. none of the above The relation between B and a is 1. B= 1/ (1 – a ) 2. β- (1-α )/α 3. β α/(1 -α) 4. β-α/(1 +α) As the temperature of a transistor goes up, the base-emitter resistance %3D 5. decreases 6. increases 7. remains the same 8. none of the above

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In a transistor, Ic = 100 mA and If = 100.2 mA. The value of ß is .
1. 100
2. 50
3. about 1
4. 200
In a transistor if ß = 100 and collector current is 10 mA, then Ig is
1. 100 mA
2. 100.1 mA
3. 110 mA
4. none of the above
The relation between B and a is
1. B= 1/ (1 – a )
2. β- (1-α )/α
3. β α/(1 -α)
4. β-α/(1 +α)
As the temperature of a transistor goes up, the base-emitter resistance
%3D
5. decreases
6. increases
7. remains the same
8. none of the above
Transcribed Image Text:In a transistor, Ic = 100 mA and If = 100.2 mA. The value of ß is . 1. 100 2. 50 3. about 1 4. 200 In a transistor if ß = 100 and collector current is 10 mA, then Ig is 1. 100 mA 2. 100.1 mA 3. 110 mA 4. none of the above The relation between B and a is 1. B= 1/ (1 – a ) 2. β- (1-α )/α 3. β α/(1 -α) 4. β-α/(1 +α) As the temperature of a transistor goes up, the base-emitter resistance %3D 5. decreases 6. increases 7. remains the same 8. none of the above
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