One end of a cord is fixed and a small 0.250-kg object is attached to the other end, where it swings in a section of a vertical circle of radius 3.00 m as shown in the figure below. When 8 = 23.0°, the speed of the object is 5.00 m/s. At this instant, find each of the following. (a) the tension in the cord T = N (b) the tangential and radial components of acceleration m/s² inward a₁ = m/s² downward tangent to the circle at = (c) the total acceleration a total = m/s2 inward and below the cord at O No O (d) Is your answer changed if the object is swinging down toward its lowest point instead of swinging up? Yes

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 30P: A point on a rotating turntable 20.0 cm from the center accelerates from rest to a final speed of...
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One end of a cord is fixed and a small 0.250-kg object is attached to the other end, where it swings in a section of a vertical
circle of radius 3.00 m as shown in the figure below. When 8 = 23.0°, the speed of the object is 5.00 m/s. At this instant,
find each of the following.
(a) the tension in the cord
T =
N
(b) the tangential and radial components of acceleration
a₁ =
m/s² inward
m/s² downward tangent to the circle
at
=
(c) the total acceleration
a total
=
m/s² inward and below the cord at
O No
O
(d) Is your answer changed if the object is swinging down toward its lowest point instead of swinging up?
Yes
Transcribed Image Text:One end of a cord is fixed and a small 0.250-kg object is attached to the other end, where it swings in a section of a vertical circle of radius 3.00 m as shown in the figure below. When 8 = 23.0°, the speed of the object is 5.00 m/s. At this instant, find each of the following. (a) the tension in the cord T = N (b) the tangential and radial components of acceleration a₁ = m/s² inward m/s² downward tangent to the circle at = (c) the total acceleration a total = m/s² inward and below the cord at O No O (d) Is your answer changed if the object is swinging down toward its lowest point instead of swinging up? Yes
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