.. The relationship between the input and output of a 2nd order circuit is defined by the differential equation: vo"(t) + (R/L) v.’(t) + (1/LC)v.(t) = vi'(t). For R=50ohms, L=2.5mH, and C=0.022UF, determine the following: The natural resonant frequency b. The damping ratio а.
.. The relationship between the input and output of a 2nd order circuit is defined by the differential equation: vo"(t) + (R/L) v.’(t) + (1/LC)v.(t) = vi'(t). For R=50ohms, L=2.5mH, and C=0.022UF, determine the following: The natural resonant frequency b. The damping ratio а.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Transcribed Image Text:.. The relationship between the input and output of a 2nd order circuit is defined by the differential
equation:
vo"(t) + (R/L) v.’(t) + (1/LC)v.(t) = vi'(t).
For R=50ohms, L=2.5mH, and C=0.022UF, determine the following:
The natural resonant frequency
b. The damping ratio
а.
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