Explain the function of the circuit. 20V Rinternal 머머머 1k2 Figure 4-2. Circuit to determine maximum power transfer ww RL
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Q: G R₁ -www- 4.7 кл E-ISV 6.3ke Rr 4 1512 R3 • E2 =10V
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Q: 3. Solve Ix and all the mesh currents using mesh analysis. lov ( + 15V (+ 252 1₁ 65 13 Me 75 =102 8…
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- 4) Therenin's Equinlena Circuit and Marimum Poer truns fer Thiorem a) For the Circuit derive the given in the figure, therenin's eq uivalence Circuit acrass the branch witn the loud impedanu. b) Culculate to deliver the volue of the load Impedanca makimum power to the load, c) caleula te the Power dissipa ted through the loud, 72Two impedances are connected in parallel across a 220-volt source. If Z1= 4 cis (30) and Z2 = 5 cis (60) ohms. Find the equivalent admittance ( Siemen ) of the circuit. O 0.435 cis(- 43.3) O 2.3 cis (43.3) O 0.835 cis (-53.3) O 0.835cis (53.3)Draw, on the Same graph, the load characteristics listed in the table what do you learn from the load characteristic !Draw the Values graph? T(W m)) N(r.p.m) Ia (A) Tmin= 03 3340 0.87 2930 o •16 2690 1-38 1-2 3250 1-9 1.5 2240 1.95 1.8 2220 1.97 2-1 2200 2. 2-4 174o 2.9
- 2-0-ea:: anc20Mass:c20Transter-conuştüru ci.pdf Dersler Z Zimbra Gelen Kutu.. C eemanonline.com.t. e Cağrı Merkezi 66% PREUMINARY INFORMATION: Electrical compensation is a major scale subject that every business/facility is Included. The power factor should be compensated to change the reactive power up to some specific values since some reactive power limits are not good for consumption and generation of the electricity (this is a far large topic which also forms some subbranches, for more information and specification please research yourself). For this reason, it is an obligation to use a compensator system for both manufacturers (wind farms/hydroelectric power plants/etc.) and consumers (residents/factories/etc.). These issues are regulated by official directives. EXERCISE STEPS: A single-phase load has an active power of P = 2 kW at 180 V @60HZ and the power factor is coso = 0.75. This motor is compensated to coso = 0.85 using a parallel capacitor (the load is modelled as series…Given the complex numbers A1=630 and A2=4+j5, (a) convert A1 to rectangular form: (b) convert A2 to polar and exponential form: (c) calculate A3=(A1+A2), giving your answer in polar form: (d) calculate A4=A1A2, giving your answer in rectangular form: (e) calculate A5=A1/(A2*) giving your answer in exponential form.A 50 Hz high voltage Schering bridge is shown in the figure. The component parameters are as follows under balanced condition: Cs-150 microfarad, C2-0.677 microfarad, R2-634 ohm, and R1-168 ohm. Find the dissipation factor of the tested material. 220V rms Lütfen birini seçin 0.1340 b.0.1672 E0051 0.0.0749 e.0.1128 88888888 00000000 25 kV rms R R₁ R₂ II (C₂ 12²
- Impedance of AC circuit and Admittance of AC circuitSHOW THE CIRCUIT USING ANY SOFTWARE OR YOU CAN DRAW IT MANUAALYY thNAKSSTwo generators, rated at 100 MW and 400 MW, are supplying power to a network. The system frequency is 60 Hz. The load on the system decreases by 160 MW and the frequency rises by 0.5 Hz. What is the droop R of the 100 MW generator? 32 Hz/MW 0.00208 Hz/MW -.004 Hz/MW -0.016 Hz/MW -0.008 Hz/MW%23 IoA 1172 IAB wwww IBC 20L-90°y -J992 204 30°y A ICA IcC a) Find the load current ICA ? b) Give the line yoltoge Vab? C Calculate the total complex power over the saurces of the voltoge7 www
- Determine the output waveform for the network of figure below and calculate the output dc level. Si D1 + 220 V + 2.7kn V. 60 Hz{ ru ODeg TS POWER_10_TO_1 Fsi D2/attempt.php?attempt-2276600 and 1120 b My Questions | bart... Translate Volvo Penta TAMD6... Sign in to your Micr... MATLAB Time left 0:43 For the circuit in Figure 2. What is the total impedance ZT in Polar form? R-10 X₁-20 ww E- 100V Xc= 155 430 Figure 2 OA B C D a. 11.180 angle 26.6deg a. 50 angle 10deg a 11.180 angle 63.43deg a 100 angle 5deg LGslerim / Çeşitli / MÜHENDISLIK FAKÜLTESİ Elektrik Elektronik Mühendisliği (İngilizce) E2E222_Circuit Theory II_B/10 Nisan 16 Nisan E2E 222-Circui x-30° A Gingi 2 Ω O a. 17,25+j26,12 A O b. 17,25+j113,65 A O c. 114,24 + j26,12 A O d. 55,61 +j68,12 A O e. 200,06+j57,15 A O f. 72,20 + j60,24 A O g. 0,49 +j33,80 A Oh. 35,00+j126,00 A j492 I₂ 3V. + I === =j2 Ω Question 2) Since the amplitude of the current source in the circuit above is x= 35, find the value of the ambient current 12. Question 2) In the above circuit amplitude of the current source is x= 35, then find the 12 mesh current.