The centripetal force acting on satellites is gravity, specifically the gravitational force between the satellite and the celestial body it is orbiting. This force pulls the satellite towards the center of the orbit, continuously changing its direction of motion and keeping it in a circular or elliptical orbit around the celestial body.
radially inward
Centripetal acceleration can be changed by altering the speed or direction of an object in circular motion. Increasing the speed will increase the centripetal acceleration, while changing the direction of motion will also change the centripetal acceleration.
If an object has only a centripetal acceleration, its velocity's direction is changing, but its speed remains constant. This means the object is continuously changing its direction while maintaining a constant speed as it moves in a circular path.
Centripetal acceleration is acceleration towards the center of the movement.
The centripetal force does not do work on an object because it acts perpendicular to the direction of motion. It is responsible for changing the direction of the object's velocity, keeping it moving in a curved path, but it does not change the object's kinetic energy.
radially inward
Centripetal acceleration can be changed by altering the speed or direction of an object in circular motion. Increasing the speed will increase the centripetal acceleration, while changing the direction of motion will also change the centripetal acceleration.
If an object has only a centripetal acceleration, its velocity's direction is changing, but its speed remains constant. This means the object is continuously changing its direction while maintaining a constant speed as it moves in a circular path.
Centripetal acceleration is acceleration towards the center of the movement.
The centripetal force does not do work on an object because it acts perpendicular to the direction of motion. It is responsible for changing the direction of the object's velocity, keeping it moving in a curved path, but it does not change the object's kinetic energy.
No it is not because its direction is constantly changing. It is not a constant force. Force has direction as well as magintude and while it magnitude is constant its direction is not.
acceleration is never a scalar...it describes in what direction is the motion of an object changing, so it can't be a scalar...
Because it is changing direction
An object experiencing centripetal acceleration accelerates towards the center of the circular path it is moving along. This acceleration is responsible for changing the object's direction, allowing it to travel in a circular motion rather than a straight line.
Centripetal acceleration is the acceleration that occurs when an object moves in a circular path, directed towards the center of the circle. It is responsible for changing the direction of the object's velocity, allowing it to maintain its circular motion. The magnitude of centripetal acceleration can be calculated using the formula ( a_c = \frac{v^2}{r} ), where ( v ) is the linear velocity and ( r ) is the radius of the circular path. This type of acceleration is essential in various physical systems, such as satellites orbiting planets and cars navigating curves.
Acceleration occurs with centripetal motion because the direction of motion is constantly changing, even if the speed remains constant. This change in direction results in an acceleration towards the center of the circular path, known as centripetal acceleration. This acceleration is necessary to keep an object moving in a circular path and prevent it from moving in a straight line.
Its changing direction ;)