Center of Mass & Gravity: Non-Uniform G Field Answered

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In a uniform gravitational field, the center of mass and center of gravity are typically considered the same. However, in a non-uniform gravitational field, such as near a black hole, the center of mass remains constant while the center of gravity can shift due to varying gravitational forces. This means that the gravitational pull on different parts of an object can differ significantly, affecting its stability and torque calculations. Understanding these concepts is crucial for accurate physics applications in varying gravitational environments. The distinction between center of mass and center of gravity becomes particularly important in non-uniform fields.
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Here is a simplified laymanized. answer given to me one time. Often for practical purposes, center of mass and center of gravity are considered the same on "earth".

If you were falling into a "black hole", pull of gravity on your feet may be much stronger than on your midsection. Midsection stays "center of mass". Feet become "center of gravity".

I'm sure you'll get a much better answer from others here.
 


center of mass and center of gravity different in non uniform gravitation field?expl

yes.

The center of mass is often called the center of gravity, but this is only true in a system where the gravitational forces are uniform
http://en.wikipedia.org/wiki/Center_of_mass
 


u r right but can u tell me that where the gravitaional forces are uniform nd where are these forces nonuniform.
 
So I know that electrons are fundamental, there's no 'material' that makes them up, it's like talking about a colour itself rather than a car or a flower. Now protons and neutrons and quarks and whatever other stuff is there fundamentally, I want someone to kind of teach me these, I have a lot of questions that books might not give the answer in the way I understand. Thanks

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