When balanced force present on a body, the net force is equal to zero.So it is not possible when balanced forces are acting on it.
This is called balanced forces and no acceleration is present.
When a star is in equilibrium, the two balanced forces are the outward pressure from nuclear fusion occurring in the star's core and the inward gravitational force pulling matter toward the center. The nuclear fusion generates energy, producing radiation pressure that counteracts gravity. This balance maintains the star's stability over long periods, allowing it to shine consistently.
If the net force is zero, then the forces are balanced. If the net force is not zero, then the forces are not balanced. You can have a balanced pair of forces, but not a pair of balanced forces.
You say that the two forces are in equilibrium.
The balance of forces that keeps a star from collapsing is called hydrostatic equilibrium. This equilibrium occurs when the outward pressure generated by nuclear fusion in the star's core balances the inward gravitational force trying to collapse the star. If these forces are not balanced, the star may either contract under gravity or expand until a new equilibrium is reached.
If the forces are balanced, then by definition the sum of the forces is zero.
Unbalanced forces is when the forces are 0N or more. Balanced forces are 0.
Balanced forces do not alter the motion of objects.
A balanced group of forces has the same effect as no force at all.
balanced
In a star, the force of gravity is trying to collapse the star inward, while the pressure from nuclear fusion in the core creates an outward force, resisting the gravitational collapse. These two forces are balanced in a stable star, leading to a state of equilibrium.