For R1=4, R2=1, R3=8, V1=10 V, V2=44 V & L1=5 in the shown circuit, find the following: V2 V1 L1 t = 0 R3 R2 i (@ t<0)= i (@ t>0)=
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Q: Use Thevenin's Theorem to solve for Vo if R1 = 3, R2 = 4, and Is = 4.
A: In this question we will find thevenin theorem...
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Q: Q2. Use the Thevenin's theorem to determine Vo(t), t>0 in the circuit of Figure Q2. 12 1H ww…
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Q: Figure T3.7 has L 1 =40 mH, M=20 mH, and L 2 =30 mH. Find expressions for v 1 ( t ) and v 2 ( t ).
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Q: y(s) u(s) s+2 s' +2s +3 Thể state-space model is 1 A = C=[2 1] D=[2] а. B = -2 -3 1 b. A= C =[1 0]…
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Q: Question 3. Answer the below questions for the given combinational circuit W3 DawI W2 Dow W1 f y W4…
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Q: For R1=4, R2=14, 1=2 A & L1=3.5 in the shown circuit, find the following: R2 R1 R1 t = 0 L1 i (@…
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Q: Q2/ For the circuit shown. measure Ii, I2, Is, V1, V2, V3 and Rr Is 10 k2 20 k0 100 v 20 k 2 5k2
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Q: 1. For the circuit in Fig. 3, switch S1 and S2 are open when t 0. Calculate i for t = 4 s and t =…
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Q: 3. Circuit in Figure 3 switch Sı is closed at t = 0, and switch S2 is closed at t = 2 s. Analyze the…
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- Find R equivalent, P1, P2, P3, Ptotal, V1, V2, V3, Voltage total, Current(I) total, see image attached. Thank you!For the circuit in the figure, draw the equivalent circuit and values I1, I2 and ID1, ID2.find? need handwritten only ,otherwise downvote.)a) Draw and explain the equivalent circuit and V-I characteristics of the UJT in detail. b) A UJT circuit is shown in figure 2. The parameters of the UJT are n = 0.65 and RBB = 7 km. i. Find RBI and RB2. ii. Determine the value of VB1B2 and Vp. R₂ R₂ 400 £2 B₂ 20 100 £2 Figure 2
- Suppose you have a voltage signal x and you want to produce another voltage signal y such that y = [xInx dt. %| Design a circuit that will do the operation for you and generate y. Hint: In(a) + In(b) = In(ab) and en (x) = x. How did we produce x2 ?(b) Prove the circuit in Figure Q.5 can perform the operation of adder/subtractor by completing Table Q.5. -Sub FA FA FA FA Figure Q.5 Table Q.5 B[3:0] Sub A[3:0] C4 S[3:0] Operation 0111 1000 1 0111 1000A Wheatstone bridge is used for measuriug the valuc of change of resistance of a strain gauge wnich forms one of the arms of the bridge. All tbe arms of the bridge including the strain gauge have a resistance of 100 N each. The maximum a!lowable power dissipation from the strain gauge is 250 mW. Determine the value of maximu:n permissible current through the strain gauge and maximum allowable value of bridge supply voltage. Suppose a source of 20 V is available, lind the value of series resistance to be connected between the source and the bridge to limit the input voltage of the bridge to permissible level.
- For R1=50, R2=60, R3=40, R4=10, R5=40, V1=45 V, V2=30 V & I1=9 A in the circuit shown below, apply source transformation to find Vx (in volt) V1 R1 Oa. -28.405797101449 Ob. 14.202898550725 Oc. -14.202898550725 Od. -42.608695652174 where V = R3 ww V R2 where R = R5 The circuit after source transformation will be as follows: R3 R4 V2 The circuit after source transformation will be as follows: R3 wwmpt3D1966098&cmid%3D11648 My Courses This course c. 11= 10 A, 12 = 5 A, V=50 V O d. 11 5 A, 12 = 2.5 A, V=25 V Question 5 For this circuit Is and V2 = Not yet R1 R2 R3 answered Marked out of 6.00 P Flag question V2 Is Vs R4 12 V Select one: O a. Is = 1 A, V2= 4 V O b. Is = 2 A, V2= 2V Oc. Is = 2 A, V2= 4 V O d. Is = 1 A, V2= 2 V Question 6 Use current division to find the currenti 120 flowing through the 120 resist Not yet answered Marked out of 28 7.00 +a)Write the relationship between V1 , R1 , Rc and Ic .b) Write the relationship between V2 , R2 , Rc and Ic .c) Write the relationship between V3 , R3 , Rc and Ic .d) Determine the values of Rc and Ic .e) Determine the value of R3 .
- If R0= 44 milliohms and Ri= 736 ohms, what is R1 , R2, R3 in the equivalent circuit????Write down at least three reasons which cause difference between R1 (R2) and R = Vmes/imes values in the below table?Compute the convolution y[n] = x[n] *h[n] of the following pairs of signals: (d) x[n] and h[n] are as in Figure P2.21. 1012345 x[n] h[n] IIIII….…..IIIII 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 Figure P2.21