Please explain /show steps thank you !
Please explain /show steps thank you ! Problem 9.34 Part A Find the steady-state expression for...
40 240 mH 1.0) 2.5 mF Part A Find the steady-state expression for io(t) in the circuit in (Figure 1) if U, = 150 sin 50t mV. Suppose that i(t) = Io cos(wt + º), where -180º < < 180°. Determine the values Io, w, . Express your answers using three significant figures separated by commas. Express Io in milliamperes, w in radians per second, o in degrees. V AJ vec O O ? 10, w, o = mA, rad/s,...
Review I LUSIDIIS The circuit in (Figure 1) is operating in the sinusoidal steady state. Part A Find the steady-state expression for v. (t) if yg = 30 sin 50,000+ V. Suppose that v.(t) = V, cos(ut + o), where -180º < < 180°. Determine the values V, w, and . Express your answers using three significant figures separated by commas. Express Vo in volts, win radians per second, o in degrees. O ACO vec o a ? Figure <...
I'm totally lost. Thank you!
Use the mesh-current method to find the steady-state expression for v, in the circuit seen in (Figure 1) if v, equals 75 cos 5000t V. Write the steady-state expression for vo(t) as v. = V cos(wt + o), where -180° < < 180°. Suppose that R = 12 12. igure < 1 of 1 4 mH 110 mH 100 Part A Find the numerical value of V.. Express your answer to three significant figures and...
Use the node-voltage method to find the steady-state expression
for vo(t) in the circuit in (Figure 1) if
vg1= 19 sin(400t+143.13∘)V,
vg2= 18.03cos(400t+33.69∘)V.
Write the steady-state expression for vo(t) as vo=Vocos(ωt+ϕ),
where −180∘<ϕ≤180∘.
EE 211/EE 212 FA19 Circuits Analysis for Engineers KEE 211/212 HW #10 -- Impedances, Sinusoidal Steady State Analysis Problem 9.57 PSpicelMultisim Use the node-voltage method to find the steady-state expression for (t) in the circuit in (Figure 1) if gl19 sin(400t143.13°) V. g218.03 cos(400t 33.69o) V. Write...
Part A Find the steady-state expression for in the circuit of (Figure 1) = 0.4cos 20001 A. Suppose that (0) - Vicos(wf+ o), where -180°C 180. Determine the values .w. Express your answers using three significant figures separated by commas. Express V in volts, win radians per second, in degrees. 30 AEG V OE? V, rad/s. Submit Request Answer Figure Provide Feedback Next Part A Find the steady-state expression for in the cirout of Figure 1), -0.4.cos2000A. Suppose that (t)...
Problem 9.30 Review I Constants Part A The state. circuit in (Figure 1) is operating in the sinusoidal steady Find ao (t) if us (t) = 45ain 4000t V. Suppose that 20 (t) =石cos(wt + φ), where-360° < ф-360". Determine the values Ta' w, and φ. Express your answers using three significant figures separated by commas. A, rad/s, Submit Requeet Anewer Figure 1 of 1 < Retum to Assignment Provide Feedback 10 Ω 2.5 mH 20 Ω 12.5 F
Use the node voltage method to find the steady-state expression for io in the circuit seen in (Figure 1) if ig 4 cos 2500t A and v, 16 cos(2500t + 90° ) V Write the steady-state expression for io(t) as to = L cos(wt + φ), where-180° <φ < 180° Figure く 1of1 100 μF 50 uF 12Ω View "31.6 mH 30
Use the node-voltage method to find the steady-state expression
for io in the circuit seen in (Figure 1) if ig= 6 cos2500tA
and
vg= 20 cos(2500t+90∘)V.
Write the steady-state expression for io(t) as io=Iocos(ωt+ϕ),
where −180∘<ϕ≤180∘.
Assignment 8 Problem 9.56 13 of 19 > Review I Constants Part A Use the node-voltage method to find the steady-state expression ror io in the circuit seen in (Figure 1)T = 6 cos 2500t A and Find the numerical value of 2250090) V...
please
solve in details
Problem 9.30 PSpicelMultisim く) 3015 "> Part A The circuit in (Figure 1) is operating in the sinusoidal steady state Find i (t) if u, (t)-40 sin 4000t V, Suppose that i (t)-lo cos( and φ. t + ф 360 360. Determine the values l. a. < ф where Express your answers using three significant figures separated by commas. 0四 Figure of 1 A, rad/s, 10, w, φ= Request Answer Submit Provide Feedback Next> 2.5 mil...
thank you
....?????4G 10:53 ? ?? ece212exami practiceS2 … 1. Find the steady state expression for vo(t) in the circuit below if v, (t) = 40 cos(50,000tV 30 ? v, 1,2 mH