Electrical Engineering: Principles & Applications (7th Edition)
Electrical Engineering: Principles & Applications (7th Edition)
7th Edition
ISBN: 9780134484143
Author: Allan R. Hambley
Publisher: PEARSON
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Chapter 4, Problem 4.18P

Consider the circuit shown in Figure P4.18. Prior to t = 0, v 1 = 100 V , and v 2 = 0 .

  1. Immediately after the switch is closed, what is the value of the current [i.e., what is the value of i ( 0 + ) ]?

  • Write the KVL equation for the circuit in terms of the current and initial voltages. Take the derivative to obtain a differential equation.
  • What is the value of the time constant in this circuit?
  • Find an expression for the current as a function of time.
  • Find the value that v2approaches as t becomes very large.
  • Chapter 4, Problem 4.18P, Consider the circuit shown in Figure P4.18. Prior to t = 0, v1=100V , and v2=0 . Immediately after

    Figure P4.18

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    Consider the circuit shown in Figure P4.55. a. Write the differential equation for v(t).b. Find the time constant and the form of the complementary solution.c. Usually, for an exponential forcing function like this, we would try a particular solution ofthe form vp(t) = K exp (−10t). Why doesn’t that work in this case?d. Find the particular solution. [Hint: Try a particular solution of the form vp(t)=K t exp (−10t). How ]e. Find the complete solution for v(t).
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    Consider the circuit shown in Figure P4.18. Prior to t=0, v 1 =100 V, and v 2 =0.a. Immediately after the switch is closed, what is the value of the current [i.e., what is thevalue of i( 0+ ) ]?b. Write the KVL equation for the circuit in terms of the current and initial voltages. Take thederivative to obtain a differential equation.c. What is the value of the time constant in this circuit?d. Find an expression for the current as a function of time.e. Find the value that v2 approaches as t becomes very large.

    Chapter 4 Solutions

    Electrical Engineering: Principles & Applications (7th Edition)

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