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Find mesh current i1, i2, and i3 in term Vx and find
Vx which non current flow between node
A and Node B
10v 100nF ' Ž 100 s2 2
Use linearity and the assumption that Vx 3 V to find the actual value of Vx in the given figure 10Ω 40 Ω 30 Ω 1 amp The actual value of V, due to the 1-A source is
Q1. Zur In Find Vx in the circuit below: + V IR 100 3 vx Ellor ISV : 5v + ZUX +V, TV +Vx=0 - V222t 10110 = 50w
Do only b)
2. 9 marks] (Vx)(Vx)A = (Vx)A a) 3 marks] Prove that (Vx)(Vx)A = (Vx)A b) [2 marks] State the dual of c) [4 marks] Prove the dual theorem you stated in b)
Find the value of Vx in the circuit in the figure such that the power supplied by the 7-A source is 15 W. +- 10 310 2A 40 4V+ 320 203 7A V
such that F[ X 3, 13-2, E1% -4, VX-2, VX-1 and V[85] -4. Find the expected value of -2X;. QUESTION 13 Let the independent random variables X. X, and 3%, and the variance of U-2. BARU-12. VU - 12 . BU-0, V[0] = 12 BC.EU - 4, VIU] - 4 D. None of the other three answers
12 Node voltage and superposition. Find the voltage Vx at node X. Then find the currents 1-14 in figure 1.25. Check these currents using super position of the currents due to the 1 V and 2 V batteries; (note that in doing this. the batterv not being used must be replaced bv a short circuit) 2V 50Ω 100Ω t12 100Ω IV Fig. 1.25
(b) How much Find the voltage Vx (d) Find the voltage Vy (Ge, Find the wotengergy does the upper-def curent soure supply in a 5 second interval of time? 6 V 2 k2 2 k2 6 mA 36 V Vy
Question 1 Find the area of the region enclosed by the curves: y = vx – 1 X – y = 1 Enter an exact number as your answer (not a decimal)