For the circuit shown below, assume V₁ = 1 volt and k'(W/L) = 3.0 mA/V². If R = 2.0 k2, determine V₁ in volts. t +5V R V₁ 2 mA
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- Determine E and P3. Given R1 = 10ohms, R2 = 20ohms, R3 = 60 ohms, R4= 10ohms, R5= 20ohms, R6= 60ohms, R7= 10 ohms, R8= 20 ohms. R9= 30ohms, P6 = 540W.the adjoining figure. This lamp can withstand a maximum voltage 3.0 v 0.4 9. Volt-ampere (V-I) charaeteristics of an incandescent lamp 16thd in and a maximum current 0.4 A. An infinite ladder network consisting a large number of these lamps is also shown in the figure given belo How much maximum voltage can be applied between the terminals A and B, so that no lamp gets damaged? (Use V5 = 2.2). Ans:x4.2V Hint: Curentin all bulls except first isEstimate voltage E2 when E1=90sin2400t V, R1=R2=20 ohms, L1= L2=3mH and M=0.15mHGiven Ro= 8 ohm and Vs=20 V How do we find V0 and iWhat is the difference between the cut-off voltage VGS0 f and the narrowing voltage Vp? Explain this with the diagram= Using Kirchhoff's rules, find the following. (₁ = 70.9 V, 8₂= 60.7 V, and 83 1 E₁ R₂ E₂ 4.00 ΚΩ www R₂ 3.00 ΚΩ d E₁ 2.00 ΚΩ www R₁ (a) the current in each resistor shown in the figure above (b) the potential difference between points c and f 79.1 V.)If the voltage V, = 800 mV, then the current flowing in the load I, is: %3D -j20n Select one: O a. None of these O b. Is 100 <-90° mA O c. Is 5.0<.-90° A O d. Is 5 <90° mA ell5: For the coupled circuit shown in Figure 3, find the voltage across the capacitor of -j102 reactance with Vi-1040° V and V2-10290° V? j20 50 j50 50 -j100 Figure 3A dc generator and a battery are connected to a resistive load RL in the figure below. For each, determine the value of RL for maximum power transfer to RL. Next is to determine RL to 75% efficiencyReduce the following circuit to its simplest form: L₁ LA voo 0.56 H L2 1.2 H R ww voo 1.8 H L3= 1.2 H mooUse Kirchhoff's Law to solve for the current passing through each resistor. Compare it with what you got from the PHET Simulation A D 392 www 6V E www F 192 www 292 352 www 9V B CQ1) For the circuits shown in figure below, obtain the equivalent resistance at terminals a-b. sa 200 ww- 20SEE MORE QUESTIONS