Can force be applied in vacuum?

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donaldparida
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Is the capability to apply force dependent on the medium.Suppose two human beings are placed in vacuum.Now, can they apply forces on each other?
Also, can force fields such as gravitational and electrical fields exist in vacuum and if so then why?
 
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donaldparida said:
Is the capability to apply force dependent on the medium.Suppose two human beings are placed in vacuum.Now, can they apply forces on each other?
Also, can force fields such as gravitational and electrical fields exist in vacuum and if so then why?
Yes. Yes. Yes. Think about it for a moment.
 
donaldparida said:
Suppose two human beings are placed in vacuum. Now, can they apply forces on each other?
What else should happen? That they pass through each other like ghosts, or what?
 
Then replace the humans with robots.
 
George Carlin knows the answer.
 
I think you really mean to say in space - correct? Otherwise I have no idea why you think a vacuum affects forces. In space, you may be thinking there is nothing to "push against" - but how do rockets work, they expell a propellant in one direction that pushes ( generates a force) on the rocket in the opposite direction.
 
donaldparida said:
Then replace the humans with robots.
You do realize that we already sent humans and robots into space?
 
Well, I am confused over this since i used to think earlier that you apply force in vacuum but my physics teacher said that Newtonian forces do not exist in vacuum.
 
Did he give an explanation, how he came to that conclusion? It's totally ununderstandable to me, how you can get such an idea. The fundamental forces are all defined in "the vacuum". Forces like pressure of a gas or something like that are derived from the vacuum theory (hydrodynamics, kinetic gas theory) via statistical mechanics. On a fundamental level forces are mediated by fields, which can move through space as any other "object".
 
No, he did not provide an explanation. Well the conversation between us was somewhat like this:
Me- What happens to the energy of an object when we lift an object in a vacuum or a fieldless region as opposed to the case when we lift it in a field such as a gravitational field(in which case its P.E. increases).
Teacher-Newtonian forces do not exist in vacuum and so the question of lifting them in vacuum does not arise.
 
donaldparida said:
No, he did not provide an explanation. Well the conversation between us was somewhat like this:
Me- What happens to the energy of an object when we lift an object in a vacuum or a fieldless region as opposed to the case when we lift it in a field such as a gravitational field(in which case its P.E. increases).
Teacher-Newtonian forces do not exist in vacuum and so the question of lifting them in vacuum does not arise.
Maybe he meant the fieldless region not the vacuum as such?
 
You mean that Newtonian forces don't exist in fieldless regions
 
I guess you are talking about field forces and what about forces applied by contact.