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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,...
Saved Help Se QS 17-4 Computing plantwide overhead rates LO P1 Rafner Manufacturing identified the following budgeted data in its two production departments. Assembly $1,267,200 12,700 DLH 6,700 MH Finishing $670,eee Manufacturing overhead costs Direct labor hours Machine hours 28,700 DLH 16,700 MH Required: ces 1. What is the company's single plantwide overhead rate based on direct labor hours? <Prev 2 of 7 Next> se bere to search 7 O T K M N V Z X 166 S
Problem 6)
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Problem 6 Part A ll Review | Constants I,n = 7 A f = 400 Hz , R1 = 2 Ω , R2 = 4 Ω , L1 = 10 mH The output current io(t) takes the form .,-100 mH . C1 = 30 mF , and C2 = 80 mF , in the circuit shown ie(t) Find Io 1, cos(2m400t +%) ,o View Available Hint(s) し2 図? Submit Rather than analyze this...
2. Spts) Express (0) in terms of the unit step function ue(t) and find its Laplace transform. f(t) = 0, 0 St<1 2, 13t<4 Ten, t24
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2. Find the current lo(t) and the indicate which method voltage Vo(t) in below circuit. Make sure you you are using for your calculations. (20 points) io(t) 0.01 F 25 cos2or v(+ 0.4 H 0.02 F 5?
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be ri d e ao bds mo 5t dso eab hl -us ag 0 cnn 7en yeu brq sgt ena een ibr its ng r att ad lo-w th...
Find F(s). se{(7t + 1) U(t = 1)} F(S) = Submit Answer
. Find the response voltage v) in the rut below i th independenure e isc (t)- 12 cos 100t +16 sin 100t A peak Leave the answer for v(t) in trigonometric form. Also find the impedance presented to the independent current source. (-24 cos 100t + 8 sin 100t, 5 +/5 Ω) 20 ohm 10 ohm 100 mH 0.21,(t) sc(t) SC
cut shown below, find the transfer function T(s)-I(s) V(s) io(t) Q.6
Question 1 10 pts 1. Find the value of vo(t) and io(t) Vg(t) = 400 cos(5000t +30°) v 60 mH 2uF HE 5012 + 100 120 150i6