30. (II) Calculate the magnitude and direction of the currents in each resistor of Fig. 19–58. 5.8 V 25 Ω 3.0 V 120 Ω 356 2 110 2 FIGURE 19–58 Problem 30. 74 2
Q: Determine the z parameters for the circuit shown in below. 6Ω I, + 4Ω 0.66V, V, |
A: Y - parameter equations,I1 = Y11V1+ Y12V2I2 = Y21V1+ Y22V2For V2 = 0;Y11 = I1V2V2 =0; Y21 = I2V1V2=0…
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A: Lets use the network reduction techniques to solve for the total current.
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Q: Practice Problem 19.15 Obtain the h parameters for the nerwork in Fig 19.51 using PSpice 2r, AnSwer:…
A: In this question we need to find a h parameters for given circuit.
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Q: *8. Using superposition, determine the current Iz for the net- work of Fig. 18.116 (µ = 20; h =…
A: The solution is given below.
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A: Apply KVL in two loops to find two equations relating two mesh currents . Solving two equations…
Q: *9. Determine V₁₁ and Vo₂ for the networks of Fig. 159. +12 -10 Vo GaAsS Ge Si (b) 1.2 ΚΩ Vo₂ 3.3 ΚΩ
A: 9)(b) To determine Vo1 and Vo2 for the given diode circuit
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Q: 1024 -10 If H(2) = for |z] > 0, is the corresponding LTI system causal? Justify your 1– Į--1 answer.
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A: Detail solution is in the image
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Q: (II) (a) What is the potential difference between points a and d in Fig. 19–57 (similar to Fig.…
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A: To find the total power consumed
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Q: 15. Determine the nodal voltages for the networks an E = 50 V / 120° ( 10 Ω 10 Ω flu 8 Ω Η 8000 4 Ω…
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Q: 52. (I) Estimate the value of resistances needed to make a variable timer for intermittent…
A: Given data: C=1×10-6 F The expression is given as, R1s=τC=151×10-6 =15×106 Ω R2s=τC=81×10-6 =8×106 Ω
Q: 20 Ω 20 Ω 201,
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A: Maxwell's bridge is the bridge used to measure the self inductance of the circuit.
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Q: 20 Ω 16 2 5Ω a Rab 18 2 20 Ω 12 9Ω 2Ω
A: The given circuit is,
Q: necessary equations.) ww 352 252 Gov.
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Q: 30 0 15 1 10 0 23 V Vdc 46 V io 20 ! 25 0
A: we need to find out Vdc when i0 = 0 by nodal analysis.
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A:
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Q: . Using superposition, determine the current I, for each network of Fig. 18.110. Xe I- 0.3 AZ 60° (1…
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Q: *2. Using superposition, determine the current I for each network of Fig. 18.110. R Iz 32 62 E = 10…
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Q: he 2.5 A source acting alone. Assume the sources to deal. 40 0 40 12 V
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Q: *2. Using superposition, determine the current I, for each net- work in Fig. 18.108. XL + E₁ = 20 V…
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A: In this question, We need to determine the current IL using the super position theorems?
Q: *13. Find the Thévenin equivalent circuit for the portions of the networks of Fig. 18.121 extenal to…
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Q: Determine Vo, and Vo, for the networks of Fig. 159. 02 Si Ge Si 1.2 k2 4.7 k2 Voz Voz ㅇ +12 V o -10…
A: (a) Redraw the circuit diagram representing the currents.
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Q: Q.1-For the circuit shown, calculate the total current (IT). 30 30 lo 50 20V 20 40 Q.2- For the…
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Q: 1. For each of the following systems, prove whether it's (i) linear or non-linear (ii) causal or…
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Q: Check the causality of the given system. y(n)= x(n) + 1/x(n-1)
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A: It is given that:
Q: *8. Determine V, and Ip for the networks of Fig. 158. 0 Vo Si | |10 mA ' 2.2 ΚΩ • 2.2 ΚΩ +20 V Ο 6.8…
A: a) Given,
Q: (II) Calculate the magnitude and direction of the currents in each resistor of Fig. 19-58. 5.8 V 25…
A: `Redrawing the circuit with marking the current in the given circuit:
Q: Q1) find the current 1, use mesh analysis. 5 SL 3A 16V 42 124 16
A: PRESENCE OF SOURCE: In the presence of sources, all the passive elements which are R, L and C always…
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