A cylinder of mass m and mass moment of inertia JO rolls without slipping on the ground and is constrained by two springs of stiffnesses kl and k2. Find the equation of motion with respect to theta k₁ m, Jo k2 000 000 R Submit the equivalent moment of inertia and the equivalent torsional spring rate.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A cylinder of mass m and mass moment of inertia JO rolls without slipping on the
ground and is constrained by two springs of stiffnesses kl and k2. Find the equation of
motion with respect to theta
k2
k₁
m, Jo
000
000
R
a
Submit the equivalent moment of inertia and the equivalent torsional spring rate.
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Transcribed Image Text:A cylinder of mass m and mass moment of inertia JO rolls without slipping on the ground and is constrained by two springs of stiffnesses kl and k2. Find the equation of motion with respect to theta k2 k₁ m, Jo 000 000 R a Submit the equivalent moment of inertia and the equivalent torsional spring rate. Upload Choose a File
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