SophiaPretty

(5)

$14/per page/Negotiable

About SophiaPretty

Levels Tought:
Elementary,Middle School,High School,College,University,PHD

Expertise:
Accounting,Algebra See all
Accounting,Algebra,Applied Sciences,Architecture and Design,Art & Design,Biology,Business & Finance,Calculus,Chemistry,Communications,Computer Science,Economics,Engineering,English,Environmental science,Essay writing Hide all
Teaching Since: Jul 2017
Last Sign in: 304 Weeks Ago, 5 Days Ago
Questions Answered: 15833
Tutorials Posted: 15827

Education

  • MBA,PHD, Juris Doctor
    Strayer,Devery,Harvard University
    Mar-1995 - Mar-2002

Experience

  • Manager Planning
    WalMart
    Mar-2001 - Feb-2009

Category > Computer Science Posted 04 Dec 2017 My Price 10.00

Include MultiSIM screenshots where indicated.

Please see attached, please do not plagerize. The assignment is attached.

Show work for full credit. Include MultiSIM screenshots where indicated.

  1. Consider the parallel inductive reactive circuit below. Calculate the following: (Express all answers in magnitude/phase angle form)
    1. Zeq
    2. IT
    3. XL2
    4. XL1
    5. IR1
    6. IR2
    7. IL1
    8. IL2

Parallel Inductive Circuit:

Consider the series RC circuit below:

  1. Assume C1 is completely discharged with S1 in the position shown. If S1 is moved to the top position, how long will it take for the capacitor voltage to reach
    1. 3V
    2. 6V
    3. 15V
    4. 20V
  2. Assume that C is completely discharged with S1 in the position shown. If S1 is moved to the top position, how much is the resistor voltage at the following time intervals?
    1. t = 0 s
    2. t = 4.5 ms
    3. t = 10 ms
    4. t = 15 ms
    5. t = 25 ms

Series RC Circuit:

·  Analyze the RLC circuit below to determine the following (include both polar and complex forms where applicable):

  1. Zeq
  2. IT
  3. IR1
  4. IL1
  5. Real Power (Watts)
  6. Reactive Power (VARs)
  7. Apparent Power (VAs)
  8. Power Factor

·  Construct the circuit in MultiSIM and run a Single Frequency Analysis to confirm your calculations for the phasor values in part 3. Capture a screenshot of the analysis for both Magnitude/Phase (polar) and Real/Imaginary (complex).

·  Measure the real power of the circuit and the power factor using a watt meter. Capture a screenshot of the watt meter readings.

RLC Circuit:

Attachments:

Answers

(5)
Status NEW Posted 04 Dec 2017 11:12 AM My Price 10.00

-----------  ----------- H-----------ell-----------o S-----------ir/-----------Mad-----------am ----------- Th-----------ank----------- yo-----------u f-----------or -----------you-----------r i-----------nte-----------res-----------t a-----------nd -----------buy-----------ing----------- my----------- po-----------ste-----------d s-----------olu-----------tio-----------n. -----------Ple-----------ase----------- pi-----------ng -----------me -----------on -----------cha-----------t I----------- am----------- on-----------lin-----------e o-----------r i-----------nbo-----------x m-----------e a----------- me-----------ssa-----------ge -----------I w-----------ill----------- be----------- qu-----------ick-----------ly

Not Rated(0)