no air resistance, g=9.81 mls^2 mB=2450 goes up ramp, and the coefficient of kinetic friction between mass b and the ramp is 0.6. The ramp makes an angle of 63 degrees  a counterweight is used to raise stone B by tying it to a second mass MA. The coefficient of friction for mA as it slides down the shaft is 0.4 pitched at an angle of 13 degrees.  question- draw a body diagram for mass B and write 2 equations for the forces in x and y direction.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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no air resistance, g=9.81 mls^2

mB=2450 goes up ramp, and the coefficient of kinetic friction between mass b and the ramp is 0.6. The ramp makes an angle of 63 degrees 

a counterweight is used to raise stone B by tying it to a second mass MA. The coefficient of friction for mA as it slides down the shaft is 0.4 pitched at an angle of 13 degrees. 

question- draw a body diagram for mass B and write 2 equations for the forces in x and y direction. 

The image depicts a mechanical diagram with two sections connected by a joint. Here's a detailed transcription and explanation:

1. **Inclined Plane**:
   - The left side of the diagram features an inclined surface, labeled with an angle "β".
   - A spring is depicted along this incline.

2. **Sections with Masses**:
   - The inclined section is marked with "mb" indicating mass m_b.
   - The horizontal section is labeled "MA" for mass M_A.

3. **Joint and Spring Systems**:
   - Two springs, depicted with a zigzag line pattern, are connected to each mass.
   - These springs appear to be under tension/compression.

4. **Angles and Measurements**:
   - The angle at the joint between the incline and the vertical line on the top right is labeled "α".
   - Relevant angles or measurements potentially affecting spring tension/compression may include these labeled angles.

This diagram likely represents a physics problem involving mechanical equilibrium, spring forces, or dynamics on an inclined plane.
Transcribed Image Text:The image depicts a mechanical diagram with two sections connected by a joint. Here's a detailed transcription and explanation: 1. **Inclined Plane**: - The left side of the diagram features an inclined surface, labeled with an angle "β". - A spring is depicted along this incline. 2. **Sections with Masses**: - The inclined section is marked with "mb" indicating mass m_b. - The horizontal section is labeled "MA" for mass M_A. 3. **Joint and Spring Systems**: - Two springs, depicted with a zigzag line pattern, are connected to each mass. - These springs appear to be under tension/compression. 4. **Angles and Measurements**: - The angle at the joint between the incline and the vertical line on the top right is labeled "α". - Relevant angles or measurements potentially affecting spring tension/compression may include these labeled angles. This diagram likely represents a physics problem involving mechanical equilibrium, spring forces, or dynamics on an inclined plane.
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