Two blocks are stacked as shown. The blocks have masses m1 = 5.45 kg and m2 = 2m1. The kinetic coefficient of friction between the two blocks is μ1 = 0.456, while the kinetic coefficient of friction between Block 2 and the tabletop is μ1/4. A rightward force of F = 81 Newtons is exerted on Block 1. Calculate the acceleration of Block 1 in m/s2.

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Chapter1: Units, Trigonometry. And Vectors
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Two blocks are stacked as shown. The blocks have masses m1 = 5.45 kg and m2 = 2m1. The kinetic coefficient of friction between the two blocks is μ1 = 0.456, while the kinetic coefficient of friction between Block 2 and the tabletop is μ1/4. A rightward force of F = 81 Newtons is exerted on Block 1.

Calculate the acceleration of Block 1 in m/s2.

The image shows a physics diagram illustrating two blocks in contact with each other on a horizontal surface. 

- **Block m1** is positioned on top of block m2.
- An external force, labeled as **F**, is applied horizontally to block m1.
- Both blocks are likely interacting through friction and normal force.

This setup is commonly used to study the dynamics of force, friction, and motion in classical mechanics. The diagram helps in understanding how forces affect the motion of connected or adjacent bodies.
Transcribed Image Text:The image shows a physics diagram illustrating two blocks in contact with each other on a horizontal surface. - **Block m1** is positioned on top of block m2. - An external force, labeled as **F**, is applied horizontally to block m1. - Both blocks are likely interacting through friction and normal force. This setup is commonly used to study the dynamics of force, friction, and motion in classical mechanics. The diagram helps in understanding how forces affect the motion of connected or adjacent bodies.
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