The position of a particle moving in an xy plane is given by 7 = (4.00z – 1.00t)i + (5.00 – 1.00z*)j with F in meters and t in seconds. In unit-vector notation, calculate (a) r, (b) v , and (c) á fort= 3.00 s. (d) What is the angle between the positive direction of the x axis and a line tangent to the particle's path at t = 3.00 s? Give your answer in the range of (-180°; 180°). (a) Number i j Units i (b) Number i ĵ Units i (c) Number i i j Units (d) Number i Units

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 6P: At t = 0, a particle moving in the xy plane with constant acceleration has a velocity of...
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The position r of a particle moving in an xy plane is given by ř
seconds. In unit-vector notation, calculate
(a) 7, (b) V , and (c) a for t = 3.00 s. (d) What is the angle between the positive direction of the x axis and a line tangent to the
particle's path at t = 3.00 s? Give your answer in the range of (-180°; 180°).
(4.00r3 – 1.00t)î + (5.00 – 1.00r4)j with 7 in meters and t in
(a) Number
i
i Units
(b) Number
ît
i Units
i
(c) Number
i
i Units
(d) Number
i
Units
Transcribed Image Text:The position r of a particle moving in an xy plane is given by ř seconds. In unit-vector notation, calculate (a) 7, (b) V , and (c) a for t = 3.00 s. (d) What is the angle between the positive direction of the x axis and a line tangent to the particle's path at t = 3.00 s? Give your answer in the range of (-180°; 180°). (4.00r3 – 1.00t)î + (5.00 – 1.00r4)j with 7 in meters and t in (a) Number i i Units (b) Number ît i Units i (c) Number i i Units (d) Number i Units
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