Inertia is the tendency of an object to resist changes in its state of motion. If the net external force acting on an object is zero, then the object will maintain its current state of motion, whether it is at rest or moving at a constant velocity, according to Newton's first law of motion.
Inertia is the tendency of an object to resist changes in its motion. When a force of zero is applied to an object, its inertia will not be affected because there is no net force acting on the object to cause a change in its motion. The object will continue to move at a constant velocity or remain at rest due to its inertia.
When the object is at rest, the acceleration is zero. so the net total force acting on the body from all directions should be zero. when the object is moving with constant velocity, the acceleration is zero, so in this case too, after the motion is started, the force on the body should be zero. when the velocity is increasing, some acceleration is present, so some force should be present in the direction of the motion. These are the various cases which can be explained by the equation: Force = Mass * Acceleration. here the mass remains constant, so acceleration depends on the net force
As per Law of Gravitation, there is no gravitational force on a massless object, so it will not accelerate. But mass-less object does not exist. It should have some mass and all objects fall down on earth with same acceleration irrespective of their mass(if air resistance is neglected).
Forces can produce motion when the net force acting on an object is not zero, causing the object to accelerate in the direction of the force. Inertia is overcome by an unbalanced force, resulting in the object's motion.
An object at rest or moving at a constant velocity experiences a net force of zero. This can happen when the forces acting on the object are balanced, such as when the force of gravity is equal to the force pushing up from a surface.
Inertia will not be affected when "net" or "net force" is zero.
Inertia will not be affected when "net" or "net force" is zero.
Inertia is the tendency of an object to resist changes in its motion. When a force of zero is applied to an object, its inertia will not be affected because there is no net force acting on the object to cause a change in its motion. The object will continue to move at a constant velocity or remain at rest due to its inertia.
Force does not affect inertia in general. Inertia can basically be identified with the mass.
according to me zero unbalanced force is when force is applied in an object and it is not balance ,if there is no inertia due to it then it is called zero unbalanced force.
It describes motion when net force is zero.
When the object is at rest, the acceleration is zero. so the net total force acting on the body from all directions should be zero. when the object is moving with constant velocity, the acceleration is zero, so in this case too, after the motion is started, the force on the body should be zero. when the velocity is increasing, some acceleration is present, so some force should be present in the direction of the motion. These are the various cases which can be explained by the equation: Force = Mass * Acceleration. here the mass remains constant, so acceleration depends on the net force
Unless acted on by an unbalanced force, an object will maintain a constant velocity
ZIF (Zero Insertion Force)
As per Law of Gravitation, there is no gravitational force on a massless object, so it will not accelerate. But mass-less object does not exist. It should have some mass and all objects fall down on earth with same acceleration irrespective of their mass(if air resistance is neglected).
Forces can produce motion when the net force acting on an object is not zero, causing the object to accelerate in the direction of the force. Inertia is overcome by an unbalanced force, resulting in the object's motion.
Newton's First Law of Motion states that an object remains at a constant velocity unless it has an unbalanced force acting upon it. That constant velocity includes zero, which means that a stationary object with no force applied to it will not move. Since velocity includes direction, then a moving object with no force applied to it will continue to move in a straight line at a constant speed.That tendency is called inertia.