
Find Vc(t),ts0. 2 A 4Ω 2Ω
find i3 if v(t) = 96e^(-2t) for t>= 0. show all you steps
4Ω 0 v(t) 40 Ω 15Ω 10Ω
2 9 4Ω 3Ω 8 V 9 V Assume that this circuit has reached steady state (i.e, all the currents are constant). Find l, 12, ls la and Is. Also, find the charge on the capacitor.
2 9 4Ω 3Ω 8 V 9 V Assume that this circuit has reached steady state (i.e, all the currents are constant). Find l, 12, ls la and Is. Also, find the charge on the capacitor.
Problem # 1: Consider the circuit of Fig. 1: a) If vc(0) 8 V and i,(t) 40 S(t) mA, find Vc(s) and vc(t) fort>0 b) If ve(0) 1 V and ) 0.2 e u(t) A, find Vc(s) and v(t) fort>0 Problem #2: The circuit in Fig. 2 is at steady-state before t-0. a) Find V(s) and v(t) for t>0 b) Find I(s) and i(t) for t>0 5 S2 10 - 10u(t) V 6 H v(t) i(t). 130 F Figure 1...
FIGURE 26-24 2Ω 4Ω 3Ω Four resistors of values 2 Ω, 4 Ω, 3 Ω, and 9 Ω are connected across an 8-V DC source as shown in Fig. 26-24. What is the current through the 9-Ω resistor? 0.7 A O2 A 0.5 A 0.9 A
Given the network in fig., find v(t) for t>0. 2 A 1 H 4Ω 6 A 1Ω 0.03 F v (t) = cos sin
(15 pts) Problem 8: For the circuit below with V = 10 V: a) Derive the expressions for vet) and vo(t) for t<0 and t20 b) Determine vc(t) and vo(t) for t equal to 8 ms. ΙΚΩ X=0 2k8} 11 The v vc on Zon 2ks} . "
Problem 2 (8 pt) : Find the expression of voltage drop on 2Ω resistor in figure 2. 1s10 A 4Ω 8Ω 10Ω 2Ω 3Ω 3010 v + 6Ω Figure 2
Problem 2 (8 pt) : Find the expression of voltage drop on 2Ω resistor in figure 2. 1s10 A 4Ω 8Ω 10Ω 2Ω 3Ω 3010 v + 6Ω Figure 2
15. Find the electrical power dissipation in the 12 Ω resistor 4Ω 4Ω (a) 133 W (b) 3.64W (C) 0.90 W (d) 2.33 W 28 VT 8Ω 6Ω 6Ω 12 Ω
Find vc(t) for all t> 0, given the following circuit. 10Ω 100 mF vc(t 25(1- u(t) V