The power absorbed by each element (except g) on the interconnected elements shown above (a) If ia=25 A, find the voltage va? (b) Find the power absorbed by element g? (c) If ig -55 A, find the voltage vg ?
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- In the figure: R1 = 1439.170, R2 = R1 and R3 =2R2, then determine the value of the voltage source E. a 8 mA 10 mA 2 mA RT R1 R2 R3 O 25.33 11.51 O 17.27 15.43 13.82 +Q5] find the current of the resistance 1892 if the value of the source is 7.4sin(100nt-44) volt Give the right choice HH 1mF ww 0.093H R1 www 180 R4 1402 3.9mF 13.100, 78.163⁰ mA 14.100, 78.163⁰ mA O 15.100, 78.163⁰ mA ·2 V1Va 2ix Vb 13V 2A (4 %3D
- As shown in the figure, two metal plates are connected to a voltage Source the seperation astence between the plater is much smaller then Hhe s0 of Hhe plates ond He space between the plates Is tfill ed with a Uniform charge denity p -) Aind the potntial VIx) in between the plater. ) Fnd the ele ctric freld Ex Cx) in between the plater -) find the surface chorge denritres on the mne surpa ed af ept crd indt metal elaeswhats the wltage at Va? (Given 1000-j2.1414 teth Ve Va. Zth=D1000-2.1414 V=1 1 /a0.12° v SUKHZ. 90.12° %3D obme ne IS gs A Q openvellum.ecollege.com/course.html?courseld=17487819&OpenVellumHMAC=2eff1f5e5c39f8fae8797554f56600c3#10001 :9 F1 Z X 2 + W S F2 A 12 V car battery dies not so much because its voltage drops but because chemical reactions increase its internal resistance. A good battery connected with jumper cables can both start the engine and recharge the dead battery. Consider the automotive circuit of (Figure 1). Figure X # 3 0.01 Ω + 12 VE 80 F3 E Good battery 0.50 Ω Jumpers D C $ 4 + 8V3 Dead battery 000 000 F4 R FI < 1 of 1 0.05 02: % 5 wwww V Starter motor F5 T G 6 Part D B With the jumper cables attached, how much current passes through the dead battery? Express your answer with the appropriate units. I = Y Part E Submit Copyright © 2022 Pearson Education Inc. All rights reserved. | Terms of Use | Privacy Policy | Permissions | Contact Us | Value H With the jumper cables attached, in which direction current passes through the dead battery? downward MacBook Air & 7 μà Request…
- If the voltage Vs = 800 mV, then the current flowing in the primary winding Ip, is: 1:8 -j202 Select one: a. Ip =40<0° mA O b. Ip =320<-90° mA O c. Ip = 0.320<90° A %3D O d. None of these llTHROUGH THE LAZO ANALYSIS, ANSWER THE FOLLOWING QUESTIONS A) DETERMINE THE EQUATIONS OF CURRENTS I1, I2, I3 B) FIND THE VALUE CORRESPONDING TO I1, I2, AND I3 C) FIND THE CORRESPONDING VALUE Io.Determine the DC currents (IB, Ic and lĘ) and dc junction voltages (VBE, VCE and VCB) Ig=Blank 1 mA, Ic=Blank 2 mA, IĘ=Blank 3 mA, VBE= Blank 4 V, VCE = Blank 5 V and VCB = Blank 6 V Use 2 decimal places. Use the following values: VBB = 2V RB = 7 kQ Rc = 248 Q Vcc = 19 V BDc = 56 Blank 1 Add your answer Blank 2 Add your answer Blank 3 Add your answer Blank 4 Add your answer Blank 5 Add your answer Blank 6 Add your answer
- AUG-Moodle-g3 2 n My Courses ~ This Course ~ fngish (en) ~ TN ton 1 Determine v yet eied 0 e ot of 1(b) Figure Q2(b) represents a single-line diagram of typical power system with the line impedances as indicated in pu on a 100 MVA base with a synchronous generator at Bus 1. The line charging susceptances are neglected. Calculate the bus voltages of V½ and V3 in pu using Gauss-Seidel method with the initial estimates of V, = 1+ j0 pu and V) = 1+ j0 pu. Perform only THREE (3) iterations. (0) (0) 1 230.5 0.01+j0.03 pu MW G 0.025+j0.05 pu 0.02+j0.04 pu 172.9 MVAR V1 = 1.0620°[Q3] Analyze the following electrical circuit by finding the currents (I1, 12 and 13) using Gauss-elimination method R1 = 50 ohm R3 R2 RI R2 = 25 ohm 12 El = 5 volt R3 = 75 ohm E2 E2 = 4 volt ww