40/60° V +1 2 Ω ww 16Ω -j4Ω Η j8 Ω 1:2 -j12 Ω FIND the value of Vı and Vá and Io. Topic: Magnetically Coupled Circuit 20 Ω ww +) 30/0° V
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- Determine the DC currents (B. Ic and le) and de juncion voltages (VBE, VCE and Vca) mA. Ic ma, E mA VBE= V. VCE Vand VCB Use 2 decimal places. RB Use the following values: VBB = 3V RB = 4 kQ Rc = 166 0 Vcc = 19 V BDC = 70 %3D %3D VCC RC VBBin part (b, across the-j11-N capacitance in part (c). (C) j16 2 -jll 2 el 24 Q j40 Ω :-j1 Q j4Ω -3Ω -j8 Q 100 V/30° ( j10 Q -j102 j9 2 10 Ω Figure 23-24 ion 23-5 Source Conversion Convert the 120-V source andQUESTION 9 E-06, PC-02. Three inductors 5 mH, 15 mH and 25 mH are connected in series. What is the total inductance? 5 mH. 45mH. Without knowing the coupling factor the total inductance cannot be found. QUESTION 10 E-06, PC-05. An inductor is said to be saturated when? The current through it is zero. The current is at a maximum. It will no longer accept lines of flux.
- A non-sinusoidal current source (iT=2+1.5sin1000t+ 1cos3000t-0.5sin4000t) A is ?applied to the circuit shown. Find the total power 4Ω iL ww ic iT -J92 J42 55 W O 28 W O 20 W O 39 W OFind the current through the load in polar form. R1 L1 R3 C1 100 150MH 250 30uF E E1 502 120 Vms 150 Vrms 60 Hz 60 Hz 30 45° 250m H0 !!! a *Further Engineering Mathematic X + File | C:/Users/user/Downloads/Further%20Engineering%20MathematicsAssignment-2.pdf Draw T Read aloud CD 9. The two complex numbers V and W represent two reactances connected in series. Calculate the total reactance by finding their sum. AF 3+j4 B = 4-j5 C = 5-j2 D=1-j3 E = 2 +j3FF" FF 4+j1 3 of 4 10. The complex numbers V and W represent two force vectors. Place them on an Argand diagram and calculate the difference between them. 11. Use your given values of V and W to represent the reactances Z₁, Z₂ (as shown in the circuit diagram). Calculate the current flowing in the circuit in polar form if the voltage is v = 1220° and V i = ZTotal Z₁ Z₂ o J (¹) ENG T 60 11:16 PM 3/17/2023 x
- Q4. Determine the equivalent inductance and equivalent current of the inductive circuit in Figure Q4. If L5 is replaced with a capacitor of 0.5 mF, how would it affect the branch current? The alternating Voltage source has an amplitude of 20 Vm. Vm Sine 50 Hz L1 5 mH L2 3 mH Figure Q4 reee L3 6.6 mH L4 2.8 mH rele L5 7 mHPlease show your detailed solution Number 14 The current in a series inductive circuit is 7.5 A at 25 Hz. The circuit takes 425 W, and the power factor is 0.47. The resistance of the circuit is A. 7.32 ohms C. 7.98 ohms B. 7.86 ohms D. 7.56 ohmsA non-sinusoidal current source (iT=2+1.5sin10o0t+ 1cos3000t-0.5sin4000t) A is applied to the circuit shown. Find the total power? * İL iT ic -J9Ω J4Q O 55 W 20 W 39 W 28 W
- Determine the equivalent inductance and equivalent current of the inductive circuit in Figure Q4. If L5 is replaced with a capacitor of 0.5 mF, how would it affect the branch current? The alternating Voltage source has an amplitude of 20 Vm. Vm Sine 50 Hz L1 5 mH L2 3 mH cele rele Figure Q4 rele celer L3 6.6 mH L4 2.8 mH reler L5 7 mHWhat is the equivalent inductance between a and b for the circuit shown in the figure: 4₁ L3 9 mH 23.8 mH 26.8 mH 24.8 mH 25.8 mH L₂ 56 mH 6.5 mH L4 30 mH L5 42 mHA non-sinusoidal current source (iT=2+1.5sin1000t+ 1cos30o0t- 0.5sin4000t) A is applied to the * ?circuit shown. Find the total power İL iT ic -J9N J4Q 39 W O 20 W O 55 W 28 W )!( هذا السؤال مطلوب