a unbalanced force hav one direction which clealr mens that a balanced force has no direction.
wow i would prefer unbalanced force cause there is so much to write about
Both unbalanced force and balanced force can have direction. Unbalanced force causes acceleration in the direction of the force, while balanced force results in no net motion as the forces cancel each other out. The direction of the force determines how an object will move or behave.
The resultant force of a number of balanced forces acting on a body is zero force. The reason is because any force in one direction is always canceled out by another equal force but in the opposite direction. This is what is meant by balanced forces. For every force in the positive direction, there is also an equal negative force in the negative direction. So the forces all add up to Zero. No net force at all.
The resultant force of a number of balanced forces acting on a body is zero force. The reason is because any force in one direction is always canceled out by another equal force but in the opposite direction. This is what is meant by balanced forces. For every force in the positive direction, there is also an equal negative force in the negative direction. So the forces all add up to Zero. No net force at all.
If the object accelerates, that means the forces are NOT balanced.
Lift can be a balanced force or an unbalanced force. If it is balanced, the airplane will remain at the same altitude. If it is unbalanced, the plane will either rise or fall depending upon the direction of the imbalance.
net force
Either balanced or unbalanced force!
A force that does not result in movement is called a balanced force. In this scenario, the force applied in one direction is counteracted by an equal force acting in the opposite direction, resulting in no overall motion.
"Balanced force" refers to a force that is opposite and of equal value to another force.
A balanced force is either not moving or at a constant velocity
A textbook on a table is an example of balanced forces. The force of gravity pulling the book downward is balanced by the normal force exerted by the table in the upward direction, resulting in the book remaining stationary on the table.
false