Given a moving cart (ż ‡0) with a pivoting bar. The cart is at a distance from the fixed wall and the particle P is at y distance (ÿ‡0) from the bar's pivot point. Assume planar motion. X y (a) Define an inertial frame e and label all necessary quantities on the plot that you will be using for finding P's position, velocity and acceleration. You are free to define any additional frames. (b) Write expression for P's position in e frame. What is your choice for the base point of P's position vector if we are interested in obtaining its velocity and acceleration ex- pression? (c) Find P's velocity and acceleration in e frame, i.e. P and ².

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Given a moving cart (0) with a pivoting bar. The cart is at a distance from the fixed
wall and the particle P is at y distance (y # 0) from the bar's pivot point. Assume planar
motion.
X
(a) Define an inertial frame e and label all necessary quantities on the plot that you will
be using for finding P's position, velocity and acceleration. You are free to define any
additional frames.
(b) Write expression for P's position in e frame. What is your choice for the base point
of P's position vector if we are interested in obtaining its velocity and acceleration ex-
pression?
(c) Find P's velocity and acceleration in e frame, i.e. 7² and ².
Transcribed Image Text:Given a moving cart (0) with a pivoting bar. The cart is at a distance from the fixed wall and the particle P is at y distance (y # 0) from the bar's pivot point. Assume planar motion. X (a) Define an inertial frame e and label all necessary quantities on the plot that you will be using for finding P's position, velocity and acceleration. You are free to define any additional frames. (b) Write expression for P's position in e frame. What is your choice for the base point of P's position vector if we are interested in obtaining its velocity and acceleration ex- pression? (c) Find P's velocity and acceleration in e frame, i.e. 7² and ².
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