mechanism like this one, if it is known the length of O2A (link 2) is 5 cm (link 3) is 4 cm (link 3) and the length of the bo4 (link 4) is 5.5 cm (5 in.). At the a point working the p = 50 Newton style with the sustric orientation of the horizontal line is 200 look for styles

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A four-part mechanism like this one, if it is known the length of O2A (link 2) is 5 cm (link 3) is 4 cm (link 3) and the length of the bo4 (link 4) is 5.5 cm (5 in.). At the a point working the p = 50 Newton style with the sustric orientation of the horizontal line is 200 look for styles that are going on and torque on link 4.
The diagram illustrates a structural mechanism comprising rods and joints. 

- **Components**:
  - **Joints**: Points O₂, A, B, and O₄ are connected by rods.
  - **Rods**: The rods are labeled with their respective lengths: 
    - Rod O₂A is 2 units long
    - Rod AB is 3 units long 
    - Rod BO₄ is 4 units long

- **Forces and Angles**:
  - A force, labeled P, is applied at point A, inclined at an angle of 20° to the horizontal.
  - Rod O₂A makes an angle of 30° with the horizontal at the fixed point O₂.

- **Supports**: Points O₂ and O₄ are represented as fixed supports, indicated by the small semicircle and arrow symbols.

This mechanism might be analyzed for static equilibrium or kinematic motion, considering the angles and forces involved.
Transcribed Image Text:The diagram illustrates a structural mechanism comprising rods and joints. - **Components**: - **Joints**: Points O₂, A, B, and O₄ are connected by rods. - **Rods**: The rods are labeled with their respective lengths: - Rod O₂A is 2 units long - Rod AB is 3 units long - Rod BO₄ is 4 units long - **Forces and Angles**: - A force, labeled P, is applied at point A, inclined at an angle of 20° to the horizontal. - Rod O₂A makes an angle of 30° with the horizontal at the fixed point O₂. - **Supports**: Points O₂ and O₄ are represented as fixed supports, indicated by the small semicircle and arrow symbols. This mechanism might be analyzed for static equilibrium or kinematic motion, considering the angles and forces involved.
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