*15-104. A 4-lb ball B is traveling around in a circle of radius = 3 ft with a speed (VB)1 = 6 ft/s. If the attached cord is pulled down through the hole with a constant speed 2 = 2 ft/s, determine how much time is required for the ba to reach a speed of 12 ft/s. How far r, is the ball from the hole when this occurs? Neglect friction and the size of the bal %3D Vr B =3 ft (VB)1 = 6 ft/s v, = 2 ft/s
*15-104. A 4-lb ball B is traveling around in a circle of radius = 3 ft with a speed (VB)1 = 6 ft/s. If the attached cord is pulled down through the hole with a constant speed 2 = 2 ft/s, determine how much time is required for the ba to reach a speed of 12 ft/s. How far r, is the ball from the hole when this occurs? Neglect friction and the size of the bal %3D Vr B =3 ft (VB)1 = 6 ft/s v, = 2 ft/s
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Specifically a dynamics problem. Question in pic below.

Transcribed Image Text:*15-104. A 4-lb ball B is traveling around in a circle of
radius = 3 ft with a speed (VB)1 = 6 ft/s. If the attached
cord is pulled down through the hole with a constant speed
2 = 2 ft/s, determine how much time is required for the ba
to reach a speed of 12 ft/s. How far r, is the ball from the hole
when this occurs? Neglect friction and the size of the bal
%3D
Vr
B =3 ft
(VB)1 = 6 ft/s
v, = 2 ft/s
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