find RAB using Node Analysis
18 kΩ Problem 8 z, 12ΚΩ RAB - Determine RAB - - 6 ΚΩ 15 ΚΩΣ Βο- ΣΚΩ RAR = 10 ΚΩ
2. Find the equivalent resistance Rab 259 280 300 -OR 3500 $ \ 400 4 S 60 3500 2498 DW 100 AN 200 180
Figure 2 of 4 → 50 mA » RB RAB Rg} Find the equivalent resistance seen by the source in the circuit shown in (Figure 2). Suppose that R1 = 10k2, R2 = 8kS2, R3 = 2 k2, R4 = 9 kN, Rs = 18 ks, and R6 = 6 k 2. Express your answer to three significant figures and include the appropriate units. ? M: PÅ Value N O 2 Units Req = Submit Request Answer Part D Find...
Determine the voltage across the 5.0-9 resistor in the drawing 5.0 10.0 ww ww 10.0 10.0 V 15.0 V 2.0 V Number Units the tolerance is +/-5%
30Ω Ww 55 Ω t=0 İLİ 300 mil 170 V Given The switch, whuch has been open for a very long time, is closed at equited Determine the initial indactor current, othe steady-state inductor current , the time e
A 300 N force is applied to the handle of the locking plier as
shown. Determine the magnitude of the gripping force developed on a
ball at the jaw of this mechanism
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ww Ww Assignment Problem 1 Determine the natural frequencies and relative amplitudes of the following spring-mass systems with two degrees of freedom. (To be submited in the next class session) Show all the work- should include the following: ki FBD's of the two masses Equation of motion of each mass using equation of dynamic equilibrium Derivation of amplitude ratios (Modes of vibration) Derivation of frequency equation ili. iv. ki XPII
ww Ww Assignment Problem 1 Determine the natural frequencies and...
300 mA, 0.4 s, 60 kVp is changed to _______ mA, 0.4 s, 70 kVp 200 600 100 150
Consider two models for the variable Yt: MA: Yt = Bo + B1 Yt-1 + Ut MB: Yt = A + A1 Yt-1 + A2 Xt + Vt While examining the prediction errors you obtain a Diebold-Mariano statistic of 1.78, what is your decision at the 10% significance level? A. Reject the null B. Fail to reject the null O C. Not enough information
Determine the time constant after t = 0. t 0 10 k2 ww + 24 V 4 kQ v(t) 40 uF WW Suppose io (0 2 amps. Determine io (t) for t 0 t 0 3Ω ww- 4 H 48 V 4 Q 8Ω www Determine the current iR. The source is in amps. 1 H 400 Q 0.5 cos(100 iR