its acceleration will be increased
The acceleration increases.
If you increase the force on an object acceleration increases . As F = m*a, where F = Force , m = mass of the object & a = acceleration
If you increase the force on an object acceleration increases . As F = m*a, where F = Force , m = mass of the object & a = acceleration
Acceleration is a net force that is inversely dependent on mass, therefore if an object's mass decreases, acceleration increases.
F=m.a , a=F/m; acceleration is directly proportional with force. acceleration increase while force increase.
When mass increases, the acceleration of the object decreases if the force remains constant, as described by Newton's second law (F=ma). Therefore, a greater force is required to accelerate an object with higher mass at the same rate as an object with lower mass.
If the force on an object increases while its mass remains constant, the object's acceleration will also increase. This is because acceleration is directly proportional to the force acting on the object, according to Newton's second law of motion (F = ma).
Acceleration is a net force that is inversely dependent on mass, therefore if an object mass increases ,acceleration decreases
its acceleration will be increased
It increases. (Standard rocket science.)
It increases. (Standard rocket science.)
If the force on an object increases, the acceleration of the object will also increase. This relationship is described by Newton's second law of motion, which states that the acceleration of an object is directly proportional to the net force acting on it.