Solve the following circuit using Gauss Elimination method, V/R=1; R R R R 1 R 12 13 V V
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A: Final Answers:∣H(−5.64)∣≈2336.96,∠H(−5.64)≈11.28 radians∣H(4.28)∣≈491.69,∠H(4.28)≈−8.56…
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- (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?Below is a circuit diagram. Determine the impedance of every circuit The components include ZR1, ZR2, ZL1, ZL2, ZC1, ZC2. Please redo the circuit diagram using these components.As impedances, they represent components. Express your final answers in complex terms.Using rectangular coordinates, measure impedances.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.
- NOTE: Polar form for Voltage & Current. Rectangular form for Impedance Find the total impedance of the circuit, total power (apparent) delivered by the current source, Draw the phasor diagram of the voltage and current at the source, the current passing through the R2 and L1 branch, Draw the phasor diagram of the voltage and current at the R2 and L1 branch. Also, is the circuit inductive, capacitive, or neither (resistive)?Discuss Phasor algebra / complex number types (rectangular and polar) conversion complex algebraUsing the mesh analysis equation for loop 2 what are the steps for conversion for the division of imaginary numbers with phasors?
- For the circuit below, use nodal analysis (do not use mesh analysis or Wye-Delta transforms) to find :a. Ixb. The equivalent resistance that the voltage source “sees” by finding the current flowthrough the sourceOur basis for the construction of line phasors is the COSINE function. A True B FalseDesignalagcompensatorD(z) in w-planeforthefollowingsystemtomeet thegivenspecifications Dampingratiois 0.5, Settlingtimeis 1.3sec, Velocity errorconstsnt is3.0sec-1
- A Phasor is a complex number. There are three forms to present a complex number, namely, the exponential form, the polar form, and the rectangular form. 1. The exponential form is Ae 2. The polar form is AZ. This form is the simplified version of the exponential form, which is commonly used in practice questions to represent a phasor. 3. The rectangular form is a + bj. This form is a classical representation of a complex number. We can transform between polar and rectangular forms for complex numbers. Polar form to rectangular form (i.e., A and are known, we want to find a and b): a = A cos o, b = A sin o. Rectangular form to polar form (i.e., a and b are known, we want to find A and o): A = √a² + b², ¢ = arctan . (If a is negative, & value needs to be adjusted by 180 degree.) a What is the correct rectangular form of 10/90°? O 10j 10 O-10j O-10TngGrapns: A Not Secure math.webwork.rochester.edu/webwork2_. Previous Problem Problem List Next 1.0 12 1.0 (Click on graph to enlarge) For the sine function given in the graph its amplitude is its period is its phase shift is its vertical displacement is -6 Note: You can earn partial credit on this problem. Preview My Answers Submit Answers You have attempted this problem 0 times. You have unlimited attempts remaining.Use Gauss Elimination method to solve the following systems of linear equations. x13x24x3 8 3x1 -x2+5x3 7 4x1+5x2 - 7x3 = 2.