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- 16. Determine the Equivalent Resistance R, for the circuit below. 3502 1002 4002 2002 12V 5002 3002 2502 502 1502Q4(4*2)/A/ For the network of the figure shown below, using the maximum power transfer method to :the resistor (R) and find the following 10 V 22 ww 32 R 20 V 52 O 6 AE=20 Q/for the network of fig-l: (a) find RT b) Find Is (c) find Iz using KCL, find the current through vesistor 52. RT figet
- NETWORK LAWS Using superposition theorem: Find the contribution of current source IA to the branch current I4. IA=95 A, IB=39 A, and VA=7 V. (ANS: 63.333 A)30 Determine 4rZ7Av tof the cireuit shownin The A4OSFET hao Hhe followitg parameters: 7K Fig-th30). tof 200k figft-30)AmpNet.of H Voofzor) Designtheamplifier netwark of Fig(131)t0hewe again of 10 Th device shauldbebiasedat Vas- Fig.H-31) Design the nebwork of fig Cl-32)tahave an argainof 10 •Vo An Ro-2.05kn) Yos=20AS RGFor the network below, determine: a. S(ICO) b. S(VBE) c. S(B), using T1 as the temperature at which the parameter values are specified and B(T2) as 25% more than B(T1) 16 V Ice 1.8 kQ 510 k2 Vc VCE B= 120 IBQ oVE
- Find V, in the circuit in Fig. Vx + ww + 12 N 12 V 21 Vo Vx +1 +1Q3) Sketch current RI and Vo for the network Fig. below for the input shown vi 10V R1 vo ww 10KO vi V2 V3 -10VQ3) For the network shown in the figure below, determine the following: a) fe b) Zinl and Zin2 c) Zo1 and Zo2 d) Avı, Av2, and AVT +20 V 6.8 kQ 30 ka 6.8 ka 30 ka 0.5 F 0.5 uF P-150 B- 150 1.5 ka 50 uF 1.5 ka 50 uF
- 9. For the circuit in Fig., use KCL to find the branch currents Ii to l4. 2A 3AIn an R-L parallel circuit, ET=480 volts, R=16, and XL=24. Find PF.University of Basrah College of Engineering-Department of Computer Engineering First Year Electrical Circuit Lab. y voltage source to zero means replacing the voltage source with a short c - current source to zero means replacing the current source with an open he circuit given in Fig.2. containing two voltage sources. Vo R1 R2 0 en Vs1 R3 Vs2 Fig. 2 he output voltage Vo is measured over R3. Several different methods can b ine the output voltage. For this circuit, superposition provides a simple ap position method says that for this circuit having two voltage sources Vs1 ar Vo = a1Vsı + a2Vs2 nine the first term, Vs1 is kept and Vs2 is short circuited (Fig.3a). The outpu cermined then. Similarly, for the second term, Vs2 is kept and Vsi is short The output voltage Vs2 is then determined.