A 10.0 kg crate is being pulled across the floor by a cable, as shown in (Figure 1). The friction force between the crate and the floor is f=24.6 N, and the crate is accelerating to the right at 2.00 m/s² Determine (a) the component of the tension force along the direction of motion, (b) the magnitude of the tension force, (c) the component of the tension force perpendicular to the floor, and (d) the normal force on the crate.

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A 10.0 kg crate is being pulled across the floor by a cable, as shown in
(Figure 1). The friction force between the crate and the floor is
f=24.6 N, and the crate is accelerating to the right at 2.00 m/s².
Determine (a) the component of the tension force along the direction of
motion, (b) the magnitude of the tension force, (c) the component of the
tension force perpendicular to the floor, and (d) the normal force on the
crate.
Figure
T
30°
1 of 1
Transcribed Image Text:A 10.0 kg crate is being pulled across the floor by a cable, as shown in (Figure 1). The friction force between the crate and the floor is f=24.6 N, and the crate is accelerating to the right at 2.00 m/s². Determine (a) the component of the tension force along the direction of motion, (b) the magnitude of the tension force, (c) the component of the tension force perpendicular to the floor, and (d) the normal force on the crate. Figure T 30° 1 of 1
Draw a free-body diagram for this system
Draw the vectors starting at the black dot. The orientation of the vectors will be graded. The length of the vectors will not be graded.
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No elements selected
Select the elements from the list and add them to the canvas setting the appropriate attributes.
Transcribed Image Text:Draw a free-body diagram for this system Draw the vectors starting at the black dot. The orientation of the vectors will be graded. The length of the vectors will not be graded. ▸ View Available Hint(s) No elements selected Select the elements from the list and add them to the canvas setting the appropriate attributes.
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