A robot lands on Mars. Its x and y coordinates are given by equations: x(t) = 2m – (0.25m/s2)t2 y(t)= (1.0 m/s)t + (0.025m/s3) (a).What is the position and distance from landing at t=2 seconds? (b)What is thedisplacement and average velocity during the interval from t=0 s to t= 2? (c).Derive a general expression for its instantaneous velocity vector and find its instantaneous velocity in its component form as well as in terms of its magnitude.
A robot lands on Mars. Its x and y coordinates are given by equations: x(t) = 2m – (0.25m/s2)t2 y(t)= (1.0 m/s)t + (0.025m/s3) (a).What is the position and distance from landing at t=2 seconds? (b)What is thedisplacement and average velocity during the interval from t=0 s to t= 2? (c).Derive a general expression for its instantaneous velocity vector and find its instantaneous velocity in its component form as well as in terms of its magnitude.
An Introduction to Physical Science
14th Edition
ISBN:9781305079137
Author:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Publisher:James Shipman, Jerry D. Wilson, Charles A. Higgins, Omar Torres
Chapter2: Motion
Section: Chapter Questions
Problem HM
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A robot lands on Mars. Its x and y coordinates are given by equations:
x(t) = 2m – (0.25m/s2)t2
y(t)= (1.0 m/s)t + (0.025m/s3)
(a).What is the position and distance from landing at t=2 seconds?
(b)What is thedisplacement and average velocity during the interval from t=0 s to t= 2?
(c).Derive a general expression for its instantaneous velocity vector and find its instantaneous velocity in its component form as well as in terms of its magnitude.
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