Lost and in Need of Ideas for Finding Inspiration

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Finding inspiration can be challenging, particularly when discussing complex topics like circular motion in physics. The conversation revolves around calculating kinetic energy (KE) for an object in a circular orbit and understanding the necessary centripetal force. Key formulas for centripetal force are mentioned, specifically m(v^2/r). There is a clarification on the distinction between kinetic energy and total mechanical energy in the context of circular motion. Overall, the discussion highlights the need for a deeper understanding of the principles governing circular orbits.
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Homework Statement
If we have motion in a circular orbit of a body of mass m subject to the gravitational force of the Sun.
Consider the approximation for M >> m in which the Sun is located at the center of mass and μ = m.



How to show that the total mechanical energy associated with the movement of this body fulfills that
##E = −1 / 2U## ?

where U is the gravitational potential energy of m due to M
Relevant Equations
##-∇U= -G Mm/r^2##
Any idea? I am pretty lost
 
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Are you able to calculate the KE of the mass in a circular orbit?
 
Not really, can you explain it?
 
fer Mnaj said:
Not really, can you explain it?
What is needed to keep an object in a circular orbit?
 
fer Mnaj said:
Not really, can you explain it?
If you know that the orbit is circular, you have some formulas that could be used to express the required centripetal force.
 
##m (v^2/r)##
 
By ##E##, I suspect you mean kinetic energy instead of total mechanical energy.
 
why?
 
Because if ##E = U + T##, then for circular motion the following holds at all times: ##E = \frac{1}{2}U = -T##.
 
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