The acceleration of a satellite is directed inward, towards the center of the orbit.
The acceleration of a satellite is generally directed towards the center of the celestial body it is orbiting, such as the Earth for a satellite in Earth's orbit. This acceleration is due to gravity, which keeps the satellite in its orbit.
Straight toward the center of mass of whatever body it's orbiting. If the orbit happens to be circular, then that's the center of the circle.
Central acceleration is the acceleration experienced by an object moving in a circular path, directed towards the center of the circle. It is a result of the continuous change in direction of the object's velocity as it moves along the circular path.
When it is closest to the planet.One of the components of the acceleration, the normal acceleration, is equal to v2/r, where v is the satellite's speed and r is the radius of the current orbit followed by the satellite. So, the smaller the radius, the higher the acceleration.
In uniform circular motion, the force is directed towards the center of the circle, while the acceleration is directed towards the center as well.
Centripetal acceleration is the acceleration directed towards the center of a circular path, while radial acceleration is the acceleration directed along the radius of the circle. In simpler terms, centripetal acceleration keeps an object moving in a circle, while radial acceleration changes the speed of the object.
When an object is moving upwards, its velocity is directed upwards. If the object is near the Earth or any other planet, then its acceleration is directed downwards, which also means that its upward velocity is decreasing.
yes, this ADG helps the satellite to orbit earth. This is the centripital force
No, radial acceleration and centripetal acceleration are not the same. Radial acceleration is the acceleration directed towards the center of a circle, while centripetal acceleration is the acceleration that keeps an object moving in a circular path.
Centripetal acceleration is the acceleration directed towards the center of a circular path, while tangential acceleration is the acceleration along the tangent of the circle, perpendicular to the centripetal acceleration.
a satellite in orbit; it is moving at constant speed but is accelerating outward in circular acceleration, balanced by gravity acceleration (centripetal force).
Centripetal acceleration is the acceleration directed towards the center of the circle in circular motion, while tangential acceleration is the acceleration along the tangent to the circle.