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what are the x- direction and the y-direction equations for body diagram below using Newton's Second law equation a=F/m. 

The image displays a force diagram with several vectors and labels:

1. **Vectors:**
   - A vector pointing upwards labeled as "n" represents the normal force.
   - A vector pointing to the left labeled as "fk" represents kinetic friction.
   - A vector pointing downwards labeled as "w" represents weight.
   - A vector pointing diagonally upwards to the right labeled as "T" represents tension.

2. **Angles:**
   - The angle between the tension vector "T" and the horizontal axis is labeled as "θ".

This diagram is useful for analyzing the forces acting on an object on an inclined plane or surface, showing how tension, friction, and normal forces interact.
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Transcribed Image Text:The image displays a force diagram with several vectors and labels: 1. **Vectors:** - A vector pointing upwards labeled as "n" represents the normal force. - A vector pointing to the left labeled as "fk" represents kinetic friction. - A vector pointing downwards labeled as "w" represents weight. - A vector pointing diagonally upwards to the right labeled as "T" represents tension. 2. **Angles:** - The angle between the tension vector "T" and the horizontal axis is labeled as "θ". This diagram is useful for analyzing the forces acting on an object on an inclined plane or surface, showing how tension, friction, and normal forces interact.
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Using Newton’s second law in the x-direction

ax=Fxm=Tcosθ-fkm

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