Determine the voltage Vbd across resistor Rp. Given R₂ = 3, R₁ = 4, Rc = 4, and Vbc = 9 Ra b a 2Vcd + s d Rr 2 1 ww с Re.
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- Solve no. 02 and show solutions. (Lesson: Network Laws (Source Transformation and Superposition Theorem))Build Circuit 1b in Multisim. Using MultiSim’s Oscilloscope, display and measure the voltages including the phase angles with respect to the input voltage. THIS IS 1b Problem: 1b) For the circuit shown , let R= 1kohm, L1 = 10mH, C1= 50nF. Calculate the values of Z, Phase Shift, I, Vr, Vc, VL , PR, PAPP and Power Factor. Do this for V1= 10 V at 10000Hz. Find resonant frequency. Measure phase shift like so: a) Measure the difference in times of the peaks for the two different waves. b) Divide this difference by the period length. The ratio tells you what fraction of a cycle the time difference is.c) One cycle is 360 degrees (or 2π radians) so multiply the fraction in step 2 by 360 degrees to convert that time difference into a phase shift (degrees)Consider the circuit diagram below. Compute a single equivalent impedance for this circuit for a source frequency of ? =60 Hz. Express your final answer as a phasor with polar coordinates. You must show your all your work for the complex math. Include a diagram of the equivalent circuit as part of your solution.
- Give the Thevenin model for the circuit below in phasors about terminals a and b, with R1=10Ω, X1=-2, X2=5, A = 3 and B=750.A series RLC circuit with L=160 mH, C= 100 micro F and R=40 ohm is connected to a sinusoidal voltage v(t) = 40sinWt, with W= 200 rad/sec. find,(1) What is impedance of the circuit (2) Let the current at any instant in the circuit be I(t) = I0 sin(Фt-F). find I0(3) What is the phase Ф I need all parts complete solve don't copy from any answer else I will give downvoteA series circuit of two pure elements has an applied voltage of 200sin(100t+30)V. Determine the resulting steady-state current of the two elements are:a) R = 300 L =2.5 Hb) R = 400, Xc= 150 c) R = 250, C = 100u d) R = 120, Xl=300
- show that v1=3i+6j and v2=-i-2j have opposite directionsThe circuit of the Figure below has Z1= 5 angle 0 , Z2= 9 angle 30 and Z3= 10 angle 80, and is supplied by a 3-phase 450-V solve for IaThe answer must be 110.29 angle -36.52L = 40 uH C = 1 uF R1 = 10 ohms R2 = 5 ohms R3 = 6 ohms 1) Admittance each branch 2) Equivalent admittance 3) What is the equivalent impedance to the right of the current source? 4) Source voltage and phasor
- 1- What is the mutual admittance, Y34, of the electric circuit shown in Figure ? Select one: a. 2+j3 b. 0 c. -2+j3 d. -2-j3 2- The admittance of the impedance -j0.5 is given by: Select one: a. 2j b. 4j c. -4j d. -2j Please help me as fast as possible please. PLEASE ANSWER ALL THE QUESTIONS COMPLETE STEP BY STEP PLEASE. THANKS.From the following circuit diagram. Determine the impedances for all the Circuit elements such as ZR1, ZR2 and so on. For part A the frequency (f) is f = 60Hz & part f = 100Hz. For both parts, you must redraw the circuit diagram, with all the found impedances shown. Show your final answers as phasor with rectangular coordinates. you must show all of your work for the complex math aswell.For the circuit in as shown υI = sin 2000π t, RE = 82 kΩ, RB = 200 kΩ, and VCC = VEE = 9 V. What value of n is required to deliver maximum power to RL if RL = 10Ω? What is the power? Assume C1 = C2 =∞.