PEARSON ETEXT ENGINEERING MECH & STATS
PEARSON ETEXT ENGINEERING MECH & STATS
15th Edition
ISBN: 9780137514724
Author: HIBBELER
Publisher: PEARSON
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At time t = 17 s, the velocity of a particle moving in the x-y plane is v = 0.14i +2.92j m/s. By time t = 17.13 s, its velocity has become 0.01i + 2.82j m/s. Determine the magnitude day of its average acceleration during this interval and the angle made by the average acceleration with the positive x-axis. The angle is measured counterclockwise from the positive x-axis. Answers: dav 0= i 0.546 i 37.56 m/s²
10(a) The x-coordinate of a particle in curvilinear motion is given by x = 4.4t3 - 4.9t where x is in feet and t is in seconds. The y-component of acceleration in feet per second squared is given by ay = 2.9t. If the particle has y-components y = 0 and vy = 3.0 ft/sec when t = 0, find the magnitudes of the velocity v and acceleration a when t = 6.0 sec. Sketch the path for the first 6.0 seconds of motion, and show the velocity and acceleration vectors for t = 6.0 sec.
The hinged rod is rotating counterclockwise at a rate of 1rad/s. The slider moves with respect to the rod at a rate of 1m/s in the direction shown. At this moment, the slider is located 1m from the rod's hinge, and the rod is at the angle shown. Find the x component of the slider's total velocity. 35° 1 m/s 1 radis X Answer(s):
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