A 6.5 kg block is placed on a frictionless surface, conneted to an unknowm mass, and arranged as shown. The unknown mass falls from rest a distance 2.4 m, acheiving a speed of 4 m/s. a. Determine the unkown mass. b. Find the tension in the string.
A 6.5 kg block is placed on a frictionless surface, conneted to an unknowm mass, and arranged as shown. The unknown mass falls from rest a distance 2.4 m, acheiving a speed of 4 m/s. a. Determine the unkown mass. b. Find the tension in the string.
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A 6.5 kg block is placed on a frictionless surface, conneted to an unknowm mass, and arranged as shown. The unknown mass falls from rest a distance 2.4 m, acheiving a speed of 4 m/s.
a. Determine the unkown mass.
b. Find the tension in the string.
![The image depicts a simple pulley system with the following components:
1. **Mass M**: A block labeled "M" is situated on a flat surface. An arrow above it indicates a velocity vector (\( \vec{v} \)) pointing to the right, suggesting movement in that direction.
2. **Pulley**: Positioned at the edge of the surface, the pulley redirects the rope's path. It shows a classic depiction, where a rope moves over the wheel.
3. **Rope**: The rope connects the mass "M" to another object, indicated by the "?". The rope is taut, suggesting tension due to the force exerted by the connected objects.
4. **Unknown Mass (?)**: Hanging off the edge, opposite the mass "M", is another object whose mass is unknown, denoted by a question mark.
This system illustrates fundamental physics concepts such as tension, gravity, and Newton's Laws of Motion, commonly used to study mechanical advantage and equilibrium in pulley systems.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb0d47e19-9be2-46d0-a3e2-6a25ce7730e3%2F3f64510c-b696-442b-ac79-17c5872d2741%2Frhmhliw_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The image depicts a simple pulley system with the following components:
1. **Mass M**: A block labeled "M" is situated on a flat surface. An arrow above it indicates a velocity vector (\( \vec{v} \)) pointing to the right, suggesting movement in that direction.
2. **Pulley**: Positioned at the edge of the surface, the pulley redirects the rope's path. It shows a classic depiction, where a rope moves over the wheel.
3. **Rope**: The rope connects the mass "M" to another object, indicated by the "?". The rope is taut, suggesting tension due to the force exerted by the connected objects.
4. **Unknown Mass (?)**: Hanging off the edge, opposite the mass "M", is another object whose mass is unknown, denoted by a question mark.
This system illustrates fundamental physics concepts such as tension, gravity, and Newton's Laws of Motion, commonly used to study mechanical advantage and equilibrium in pulley systems.
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