Suppose the inductor in the circuit shown in (Figure 1) with a resonant radian frequency of 5000 rad/s has a value of 10 mH. • Part A Suppose that R- 120 1. Determine the damping type of the circuit. . O critically damped • underdamped O overdamped Previous Answers v Correct • Part B Calculate the roots of the characteristic equation for FR= 120 f1. Express your answers in radians per second to three significant figures separated by a comma. Enter your answers in rectangular form. Templates Symbolope/Displacem Vector undo redo reset keyboard shortcuts help 1, rad/s Submit Request Answer • Part C Suppose that R= 15 1. Determine the damping type of the circuit. • overdamped O critically damped O underdamped Submi Previous Answers v Correct igure O 1 of 1 • Part D Calculate the roots of the characteristic equation for R= 15 . Express your answers in radians per second to three significant figures separated by a comma. Enter your answers in rectangular form. Templates Symbols Slope/Displaceme Vector undo redo reset keyboard shortcuts help Vo R rad/s 1. 2- Submit Request Answer

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Suppose the inductor in the circuit shown in (Figure 1) with a resonant radian frequency of 5000
rad/s has a value of 10 mH.
Part A
Suppose that R = 120 N. Determine the damping type of the circuit.
O critically damped
O underdamped
O overdamped
Submit
Previous Answers
Correct
Part B
Calculate the roots of the characteristic equation for R = 120 .
Express your answers in radians per second to three significant figures separated by a comma. Enter your answers in rectangular form.
Templates Symbols Slope/Displacement Vector undo redo reset keyboard shortcuts 'help
s1, 82 =
rad/s
Submit
Request Answer
Part C
Suppose that R = 15 N. Determine the damping type of the circuit.
O overdamped
O critically damped
O underdamped
Submit
Previous Answers
Correct
Part D
Figure
1 of 1
Calculate the roots of the characteristic equation for R = 15 N.
Express your answers in radians per second to three significant figures separated by a comma. Enter your answers in rectangular form.
Templates Symbols Slope/Displacement Vector undo redo reset keyboard shortcuts
81, 82 =
rad/s
Submit
Request Answer
Transcribed Image Text:Suppose the inductor in the circuit shown in (Figure 1) with a resonant radian frequency of 5000 rad/s has a value of 10 mH. Part A Suppose that R = 120 N. Determine the damping type of the circuit. O critically damped O underdamped O overdamped Submit Previous Answers Correct Part B Calculate the roots of the characteristic equation for R = 120 . Express your answers in radians per second to three significant figures separated by a comma. Enter your answers in rectangular form. Templates Symbols Slope/Displacement Vector undo redo reset keyboard shortcuts 'help s1, 82 = rad/s Submit Request Answer Part C Suppose that R = 15 N. Determine the damping type of the circuit. O overdamped O critically damped O underdamped Submit Previous Answers Correct Part D Figure 1 of 1 Calculate the roots of the characteristic equation for R = 15 N. Express your answers in radians per second to three significant figures separated by a comma. Enter your answers in rectangular form. Templates Symbols Slope/Displacement Vector undo redo reset keyboard shortcuts 81, 82 = rad/s Submit Request Answer
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