yes
The two balanced forces acting on the ball are the force of gravity pulling the ball downward and the normal force exerted by your hand upward to support the ball's weight.
An example of balanced forces is when you push a book with the same amount of force it is pushed back with, resulting in no movement. Another example could be a tug-of-war where both teams are pulling with equal force, resulting in no movement of the rope.
When you kick a ball, the force you apply forward is balanced by the equal and opposite force from the ball pushing back on your foot. This results in a net force of zero on the ball at that moment, causing it to move forward.
Kicking a football involves applying an unbalanced force because it changes the ball's motion by accelerating it in a certain direction. The initial force of the kick overcomes the ball's inertia, causing it to move. In contrast, a balanced force is when the forces acting on an object cancel out, resulting in no change in motion.
When a ball is at rest, the forces acting on it are balanced. This means that the force of gravity pulling the ball down is exactly counteracted by the normal force pushing up on the ball from the surface it rests on. As a result, the net force on the ball is zero, and it remains at rest.
The forces acting on an object, canceling each other out is a balanced force. An unbalanced force is like a woman and a child tugging on a rope, and the woman is winning and pulling the child toward her- that is an example of an unbalanced force. A balanced force is like two children, about of the same height and weight pulling a rope and they are both balanced to each other and no one is winning- it is equal- that is an example of a balanced force.
The two balanced forces acting on the ball are the force of gravity pulling the ball downward and the normal force exerted by your hand upward to support the ball's weight.
When the wind is circling the ball and creating a balanced force
An example of balanced forces is when you push a book with the same amount of force it is pushed back with, resulting in no movement. Another example could be a tug-of-war where both teams are pulling with equal force, resulting in no movement of the rope.
When you kick a ball, the force you apply forward is balanced by the equal and opposite force from the ball pushing back on your foot. This results in a net force of zero on the ball at that moment, causing it to move forward.
When a soccer player kicks a ball, the forces involved are initially unbalanced. The player exerts a force on the ball, causing it to accelerate. However, once the ball is in motion, the forces become balanced as the force of the player's kick is equal and opposite to the force of air resistance and friction acting on the ball. This balanced state allows the ball to maintain a constant velocity until acted upon by another force.
Kicking a football involves applying an unbalanced force because it changes the ball's motion by accelerating it in a certain direction. The initial force of the kick overcomes the ball's inertia, causing it to move. In contrast, a balanced force is when the forces acting on an object cancel out, resulting in no change in motion.
When a ball is at rest, the forces acting on it are balanced. This means that the force of gravity pulling the ball down is exactly counteracted by the normal force pushing up on the ball from the surface it rests on. As a result, the net force on the ball is zero, and it remains at rest.
When a soccer ball is kicked, the forces acting on it are initially unbalanced. The force applied by the player's foot creates an unbalanced force, causing the ball to accelerate. As the ball moves through the air, air resistance and gravity act as external forces, creating a balanced force system that eventually slows down and stops the ball's motion. This can be determined by analyzing the net force acting on the ball at any given moment, which is the sum of all external forces.
When a ball is not moving, the force acting on it would be the force of gravity pulling it down towards the Earth, and if the ball is on a surface, there would also be a normal force acting upwards to counteract gravity. These two forces would be balanced, resulting in a net force of zero and causing the ball to remain stationary.
Unbalanced forces are important in order to move anything. An object under balanced forces does not move. For example as you sit in your chair reading this, gravity is exerting a force on your body downwards but your chair balances this force by exerting a force upwards on you that is equal and opposite to the force of gravity. These two forces oppose each other and therefore you do not move. In tennis in order to change the direction of a tennis ball you need to exert a net force(an unbalanced force) in the direction you want the tennis ball to move. In tennis there are also unbalanced torques(a force acting at a distance from a pivot point) on the ball that cause the ball to spin. Hope that helps.
put your hand there to stop it.