Question
Download Solution PDFWhat is the purpose of introducing two equal and opposite forces at a different point on a rigid body?
Answer (Detailed Solution Below)
Detailed Solution
Download Solution PDFExplanation:
Two Equal and Opposite Forces at a Different Point on a Rigid Body
- When two equal and opposite forces are applied at different points on a rigid body, the net force on the body remains zero because these forces cancel each other out. However, the purpose of introducing such forces is not to alter the net force but to transfer or relocate the original force to a different position on the body without changing its magnitude or direction. This principle is widely used in mechanics for simplifying the analysis of forces acting on rigid bodies.
Moment of a Force:
- A force applied to a rigid body causes both translational and rotational motion. The rotational effect of a force about a point or axis is termed the "moment of a force" (or torque). The moment is mathematically expressed as:
Moment (M) = Force (F) × Perpendicular Distance (d)
Where:
- F = Magnitude of the force
- d = Perpendicular distance between the line of action of the force and the axis/point of rotation
When two equal and opposite forces are introduced at different points, their line of action is such that the forces form a couple. A couple produces a pure rotational effect (moment) without causing any translational motion.
Why Transfer Forces?
In many practical engineering problems, it is convenient to transfer the point of application of a force to simplify the analysis. For instance:
- In structures, to analyze load distribution across beams and columns, the forces are often relocated for ease of calculation.
- In machines, forces are transferred to determine the resultant effect on different components.
- In robotics, force transfer helps in understanding the resultant torque on joints and links.
This transfer is achieved by introducing a pair of equal and opposite forces (forming a couple) such that the net force remains unchanged, and the original force is effectively relocated to the desired point.
Last updated on Jul 2, 2025
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