A cart of mass 25.1 kg is initially at rest on a flat surface. You exert a force with magnitude FYc(x) = Foe−(x/xa) at θ = 56.8 ◦ as shown, where Fo = 200.2 N and xa = 5 m. Note: x represents the horizontal displacement of the cart.  What is the speed of the cart after it has traveled from x = 0 to 6 meters? The wheels of the cart are frictionless, massless, and roll without slipping.

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Chapter1: Units, Trigonometry. And Vectors
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A cart of mass 25.1 kg is initially at rest on a flat surface. You exert a force with magnitude FYc(x) = Foe−(x/xa) at
θ = 56.8
◦ as shown, where Fo = 200.2 N and xa = 5 m. Note: x represents the horizontal displacement of the cart. 

What is the speed of the cart after it has traveled from x = 0 to 6 meters? The wheels of the cart are frictionless,
massless, and roll without slipping.

The image depicts a block on wheels, illustrating a physics concept. The diagram includes the following elements:

- A rectangular block positioned on a smooth surface with wheels underneath, indicating it can move.
- An angled force, labeled \( F_{\text{ye}} \), is applied to the block.
- The angle \( \theta \) (theta) is shown between the direction of the force \( F_{\text{ye}} \) and the vertical dashed line. This angle represents the inclination of the applied force relative to the vertical axis.
- The surface beneath the block is represented by a horizontal line.

This diagram is commonly used to demonstrate the effects of applied forces at an angle, such as calculating components of force, friction, and motion in physics.
Transcribed Image Text:The image depicts a block on wheels, illustrating a physics concept. The diagram includes the following elements: - A rectangular block positioned on a smooth surface with wheels underneath, indicating it can move. - An angled force, labeled \( F_{\text{ye}} \), is applied to the block. - The angle \( \theta \) (theta) is shown between the direction of the force \( F_{\text{ye}} \) and the vertical dashed line. This angle represents the inclination of the applied force relative to the vertical axis. - The surface beneath the block is represented by a horizontal line. This diagram is commonly used to demonstrate the effects of applied forces at an angle, such as calculating components of force, friction, and motion in physics.
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