In the direction of the net force acting on it.
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∙ 2012-02-15 01:23:32An object is accelerated in the direction of the net force acting on it, regardless of what direction it may be moving.
The direction of net force will decide the direction of motion. Hence the object will accelerate in the direction of net force.
No. The direction of an object's acceleration is always the same as the direction of the net force on it.
Acceleration is in the same direction as the net force.
The net force of an object is the total force the object has and the direction it is going. An acceleration is a change in that force so the acceleration then directly influences the magnitude and direction of the original net force.
-- When the net force on an object is not zero, the object undergoes accelerated motion.-- The magnitude of the acceleration is the ratio of the net force to the object's mass.-- The direction of the acceleration is the same as the direction of the net force.
An object is accelerated in the direction of the net force acting on it, regardless of what direction it may be moving.
The object is accelerated in the direction of the net (or resultant) force.
The object is accelerated in the direction of the net (or resultant) force.
The direction of net force will decide the direction of motion. Hence the object will accelerate in the direction of net force.
An object will accelerate in the direction of net force
The acceleration will be in the direction of the net force.
No. The direction of an object's acceleration is always the same as the direction of the net force on it.
Acceleration is in the same direction as the net force.
The net force of an object is the total force the object has and the direction it is going. An acceleration is a change in that force so the acceleration then directly influences the magnitude and direction of the original net force.
It accelerates in the direction of the net force, with an acceleration equal to (net force) divided by (the object's mass).
It will undergo accelerated motion.