dreamz25
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If a body is rotating in a circular orbit then what is the moment of net force acting on it about the axis of rotation?
OK.dreamz25 said:in gravitation i have read that...
the force on a planet towards radius is given by
GMm/r^2
There is no outward force.and the force which acts radially outwards is
Mv^2/r
The only force acting is gravity.so don't know where the net force acts... !:{
Good.and torque = F X R
if the direction of net force is towards center then it makes and angle of
180 degrees which gives ex. torque = 0 as sin 180 = 0 ...
dreamz25 said:ok.. so u mean both of them acts towards the centre... Right?
since the force on the particle by the center equals GMm/R^2
and also by Newton's second law of motion, F = ma so, F = m x centripetal acceleration (which is towards the center) = m x v^2/r
and thus we get, v = root[GM/r] ...?
cepheid said:Centripetal force is always just a requirement for circular motion. It has to be provided by something real, like gravity, or tension in a string. Without something like this to provide (or act as) a centripetal force, there simply won't be any circular motion.