For the following circuit in the frequency domain, use nodal analysis on the nodes V₁ and-V₂-to determine the phasor V, as follows:
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- Three impedances, Z1 =10020.Q, Z2 =63.2518.43.2 and Z3 =1002-90•Q are connected in star. Convert the star to an equivalent delta connection. And draw the star network and also the equivalent of delta connectionThe type of the load whose current and voltage phasors are as shown in the phaser diagram is Im 90° - Re Pure capacitive load non-pure Inductive load Purse resistive load O Pure inductive load non-pure capacitive load4- A Circuit of zero lagging power factor behaves as a. A capacitive circuit b. An inductive circuit c. RC circuit d. RL circuit
- Q1. For the system shown below T(s)= s5+10s4+45s3+90s2+164s+200 = 0 a. Complete the table Number of poles in RHS Number of poles Number of poles in in LHS jw b. Do you have special case in this question or not? c. Decide the stability/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 LGApplication: Construct the circuit in figure. R= 2,2KN, L = 1 mH, and C= 10 nF. L Necesssary Formulae: 1 Xc 2.π.f.C X.-2. π.f. L By using the formulea perform the calculations of Xc and XL then fill the table. f (Hz) Xc XL 50000 60000 70000 80000 90000 100000 110000 120000 130000 140000
- 9. The matiueonk shawn is aparastineg the steady state with simusaielal un ualtage saunces. i v= 2cos 2t amd N2 = 2 sim 2+ , diturmine the valtage VaCt). 3173 F 2173 F Ja 2173F 31H all(a) Transform v(t)=75cos(377t15) to phasor form. Comment on whether =377 appears in your answer. (b) Transform V=5010 to instantaneous form. Assume that =377. (c) Add the two sinusoidal functions a(t) and b(t) of the same frequency given as follows: a(t)=A2cos(t+) and b(t)=B2cos(t+). Use phasor methods and obtain the resultant c(t). Does the resultant have the same frequency?Let a 100V sinusoidal source be connected to a series combination of a 3 resistor, an 8 inductor, and a 4 capacitor. (a) Draw the circuit diagram. (b) Compute the series impedance. (C) Determine the current I delivered by the source. Is the current lagging or leading the source voltage? What is the power factor of this circuit?
- Solve for the node voltage V₁ -jsn So 20190 102 www +100 12 10/0л-pad attenuators are commonly used in radio frequency and microwave transmission lines and can be balanced or unbalanced designs. The unbalanced attenuator shown in figure 2 below is supplied by two DC sources, one at each end. You have been asked to calculate the current through R3 and R5 using the Superposition Theorem and the appropriate set of values from table 1 below. Show step by step working out. 5 R1 R2 50V 5 R5 R3 ㅋ Fig 2 7 R4 4 R6 30VI. Multiple Choice: (x4) 1. The impedance of an RL series circuit is given by a. R+ XL b. R²+X₁² c. (R²+X₁²) 1/2 d. none of the above 2. In an RL series circuit, line current Leads the applied voltage a. b. Lags behind the applied voltage Is in phase with the applied voltage Zero C. d. 3. In an RL series circuit, the phase difference between applied voltage and circuit current will increase if. XL is increased a. b. R is increased c. XL is decreased d. Supply frequency is decreased 4. The power consumed in an ac circuit is given by a. V In b. (VI/2)cose C. IZcose d. Vm Im cose 5. The power factor of an ac circuit is given by. XUR a. b. Z/R c. R/XL d. R/Z M 102. The 6. In an RL series circuit, R-102 and XL 1 phase angle between applied voltage and circuit current is a. 45⁰ b. 30⁰ C. 60⁰ d. 36.8⁰ 7. For greater accuracy, the value of 0 (phase angle) should be determined from a. cose b. sine c. tane d. sece 8. The power factor of a de circuit is a. 0 b. 1 C. -1 d. same in-ac-circuit 9. An…