Draw a Free Body Diagram of the particle, clearly indicating all forces acting on the particle, anc use the Free Body Diagram to determine the equation(s) of motion of the particle.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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c)
Draw a Free Body Diagram of the particle, clearly indicating all forces acting on the particle, anc
use the Free Body Diagram to determine the equation(s) of motion of the particle.
Transcribed Image Text:c) Draw a Free Body Diagram of the particle, clearly indicating all forces acting on the particle, anc use the Free Body Diagram to determine the equation(s) of motion of the particle.
Question 1
A particle P of mass m = 1 kg arrives at point O with a horizontal velocity Uo and starts rolling do
a circle with radius R = 1.5 m. The particle is attached to the point O by means of a linear spring
stiffness k = 65 N/m that is unstretched when the particle is at O. Assume that during the motion
P along the circle, the spring follows the circle. Let N = {nx, ny} be a fixed reference frame as
shown the figure and let B = {bx, by} be a reference frame attached to P so that bx is tanger
the circular path and by is perpendicular to the circular path. For convenience, take g = 10 m/s² i
this question.
O¦
ny
0/
nr
P
Transcribed Image Text:Question 1 A particle P of mass m = 1 kg arrives at point O with a horizontal velocity Uo and starts rolling do a circle with radius R = 1.5 m. The particle is attached to the point O by means of a linear spring stiffness k = 65 N/m that is unstretched when the particle is at O. Assume that during the motion P along the circle, the spring follows the circle. Let N = {nx, ny} be a fixed reference frame as shown the figure and let B = {bx, by} be a reference frame attached to P so that bx is tanger the circular path and by is perpendicular to the circular path. For convenience, take g = 10 m/s² i this question. O¦ ny 0/ nr P
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