Consider the circuit below where v1 represents a variable signal generated by a microphone. if V1=0...
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Consider the circuit below where v1 represents a variable signal generated by a microphone. if V1=0 and VT =26mV then lc = Re 100 12 -Vcc=1.8 V 1₁-3-10-16 A B = 100. 800 mV 6.92 mA 0.692 A 6.92 μA 0.692 MA For the circuit shown in the figure of the question (6.1) If v1 = 1 mV and VT=26 mV, then the variation on Ic is equal to: 0.280 A 2.80 μA 0.280 mA 2.80 mA Consider the circuit below where v1 represents a variable signal generated by a microphone. if V1=0 and VT =26mV then lc = Re 100 12 -Vcc=1.8 V 1₁-3-10-16 A B = 100. 800 mV 6.92 mA 0.692 A 6.92 μA 0.692 MA For the circuit shown in the figure of the question (6.1) If v1 = 1 mV and VT=26 mV, then the variation on Ic is equal to: 0.280 A 2.80 μA 0.280 mA 2.80 mA Consider the circuit below where v1 represents a variable signal generated by a microphone. if V1=0 and VT =26mV then lc = Re 100 12 -Vcc=1.8 V 1₁-3-10-16 A B = 100. 800 mV 6.92 mA 0.692 A 6.92 μA 0.692 MA For the circuit shown in the figure of the question (6.1) If v1 = 1 mV and VT=26 mV, then the variation on Ic is equal to: 0.280 A 2.80 μA 0.280 mA 2.80 mA Consider the circuit below where v1 represents a variable signal generated by a microphone. if V1=0 and VT =26mV then lc = Re 100 12 -Vcc=1.8 V 1₁-3-10-16 A B = 100. 800 mV 6.92 mA 0.692 A 6.92 μA 0.692 MA For the circuit shown in the figure of the question (6.1) If v1 = 1 mV and VT=26 mV, then the variation on Ic is equal to: 0.280 A 2.80 μA 0.280 mA 2.80 mA
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08 V 2 VI 18 V loof KVL in loop V 08 VBE 0 I Ine 3x16 6918 x10 ... View the full answer
Related Book For
Elementary Principles of Chemical Processes
ISBN: 978-0471720638
3rd Edition
Authors: Richard M. Felder, Ronald W. Rousseau
Posted Date:
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