The 46-kg cylinder has an angular velocity of w = 34 rad/s when it is brought into contact with the surface at C as shown in (Figure 1). The axis of the cylinder is connected to two symmetrical links. (Only AB is shown.) Neglect the weight of the links. The coefficient of kinetic friction is μ = 0.4. Figure A -500 mm- < 200 mm B C 1 of 1

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question
▼
Y
Part A
Determine how long it takes for the cylinder to stop spinning.
Express your answer to three significant figures and include the appropriate units.
t =
Part B
I μA
Submit
Value
FAB
Request Answer
=
What force is developed in the link AB during this time?
Express your answer to three significant figures and include the appropriate units
μA
15
Value
Units
?
www. ?
Units
Transcribed Image Text:▼ Y Part A Determine how long it takes for the cylinder to stop spinning. Express your answer to three significant figures and include the appropriate units. t = Part B I μA Submit Value FAB Request Answer = What force is developed in the link AB during this time? Express your answer to three significant figures and include the appropriate units μA 15 Value Units ? www. ? Units
The 46-kg cylinder has an angular velocity of
w = 34 rad/s when it is brought into contact with the
surface at C as shown in (Figure 1). The axis of the
cylinder is connected to two symmetrical links. (Only AB
is shown.) Neglect the weight of the links. The coefficient
of kinetic friction is μ = 0.4.
Figure
A
-500 mm-
200 mm
B
1 of 1
C
Transcribed Image Text:The 46-kg cylinder has an angular velocity of w = 34 rad/s when it is brought into contact with the surface at C as shown in (Figure 1). The axis of the cylinder is connected to two symmetrical links. (Only AB is shown.) Neglect the weight of the links. The coefficient of kinetic friction is μ = 0.4. Figure A -500 mm- 200 mm B 1 of 1 C
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