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Centre of Mass for Particles & Composite Bodies Video Lecture | Engineering Mechanics - Civil Engineering (CE)

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FAQs on Centre of Mass for Particles & Composite Bodies Video Lecture - Engineering Mechanics - Civil Engineering (CE)

1. What is the definition of the center of mass for particles?
Ans. The center of mass for particles refers to the average position of all the particles in a system, weighted according to their respective masses. It is a point that represents the overall distribution of mass in an object.
2. How is the center of mass calculated for a composite body?
Ans. The center of mass for a composite body can be calculated by finding the weighted average of the individual centers of mass for each component. Each component's center of mass is multiplied by its mass and then divided by the total mass of the composite body.
3. Why is the center of mass important in physics?
Ans. The center of mass is important in physics because it helps in analyzing the motion and stability of objects. It simplifies the understanding of complex systems, allowing us to treat the entire object as a single point mass with equivalent properties.
4. How does the distribution of mass affect the center of mass?
Ans. The distribution of mass affects the center of mass by determining its position within an object. If the mass is concentrated towards one end, the center of mass will be closer to that end. A more uniform distribution of mass results in the center of mass being closer to the geometric center of the object.
5. Can the center of mass be located outside the physical boundaries of an object?
Ans. Yes, the center of mass can be located outside the physical boundaries of an object. This occurs when the mass distribution is asymmetrical or when there are external forces acting on the object. The center of mass represents the average position of mass and may not necessarily coincide with the object's physical shape.
24 videos|59 docs|53 tests
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Centre of Mass for Particles & Composite Bodies Video Lecture | Engineering Mechanics - Civil Engineering (CE)

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