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Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN: 9780133923605
Author: Robert L. Boylestad
Publisher: PEARSON
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Question
"The switch in the circuit shown has been closed for a long time.
At t=0 the switch opens and remains open." 5. What is the expression for vo(t) when t≥0?

Transcribed Image Text:Figure 7.33 The circuit for
Example 7.7.
25 N
t = 0
io
75 mA
100 0
350 mH
Expert Solution
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- More details,Please step by steparrow_forward4. In the circuit below, the switch has been Starting position for its a time before and icht) for moving + at t=0. Find v(t) for +20+ +=0 + 5v ic(+) IM HE 202 www (50/3) ictt) + 25μF V(+)arrow_forwardThe switches in the circuit shown below have been open (left switch) and closed (right switch) for a longtime. At time equal to zero this switches change as indicated in figure. a) Find the numerical expressionsfor iL(t) and vo(t) for t ≥ 0. b) Find the numerical values of vL(0+) and vo(0+).arrow_forward
- Switch 1 in the circuit below has been in position A for a very long time. At time t=0, the switch moves to position B. Calculate VC(t) for t>0. Perform your analysis inthe time domain.arrow_forwardAt t=0, the switch in the circuit below closes. Determine the voltage across the capacitor at the instant after the switch closes, Vc(0+) given R₁ = 82, R₂ = 90, R3 = 20, V₁ = 10V, and V₂ = 17V + t=o R₁ 20 C R₂arrow_forwardIn the figure below, the switch in the circuit has been in position a for a long time. At t = 0, it moves to position b and Vx is 5V. 1000 t= 0 2000 i + Vx 20mF 4000 1000 Redraw the circuit, then determine the following: a) v(t) for t> 0 b) i(t) for t> 0 c) At what time is the voltage, v(t), 36.79% of its maximum value? |arrow_forward
- Question 2 The switch in Figure 1 has been closed for a long time. It is open at t=0 (the voltage source is disconnected). Let the current i(t) be the output. Derive the differential equation and specify the initial state. 252 www G www.elle 2H i(t) 1F Figure 1 8Varrow_forwardThe previous expert said they could only answer 3 of the 5 parts per Bartleby rules. I still need help with part d and e. The current answers are the following. (a) 200V (b)20ms (c)200e-50t Varrow_forward
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