A truck is attempting to pull a 500Ñ weight crate that is originally at rest to the entrance of the factory as shown in Figure Q2 (a). The coefficient of static friction is 0.4 and the coefficient of kinetic friction is 0.3. (i) Determine the tension of the cable when the truck is just about to start to move. (ii) Determine the acceleration of the truck if the tension in the cable is 350N. 30

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A truck is attempting to pull a 500N weight crate that is originally at rest to the entrance of the factory
as shown in Figure Q2 (a). The coefficient of static friction is 0.4 and the coefficient of kinetic friction is
0.3.
(i) Determine the tension of the cable when the truck is just about to start to move.
(ii) Determine the acceleration of the truck if the tension in the cable is 350N.
30
Figure Q2 (a)
Transcribed Image Text:A truck is attempting to pull a 500N weight crate that is originally at rest to the entrance of the factory as shown in Figure Q2 (a). The coefficient of static friction is 0.4 and the coefficient of kinetic friction is 0.3. (i) Determine the tension of the cable when the truck is just about to start to move. (ii) Determine the acceleration of the truck if the tension in the cable is 350N. 30 Figure Q2 (a)
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