A net force is a measure of the force being exerted on an object; zero net force means an object is at rest or moving at a constant speed.
Definition of net force:
The net force on an object is the vector sum of all individual forces acting on it.
2 Newtons to the North 7-5=2 Simple math =)
If the net force is zero, the forces are balanced. This means that all forces acting on an object are equal in magnitude and opposite in direction, resulting in no acceleration of the object.
Inertia will not be affected when "net" or "net force" is zero.
The net force acting on an object is the combination of all individual forces acting on it. It is the vector sum of all forces, taking into account their magnitudes and directions. The net force determines the acceleration of the object according to Newton's second law of motion.
Both balanced force and net force refer to the overall force acting on an object. Balanced force occurs when the total force is equal in magnitude and opposite in direction, resulting in no change in an object's motion. Net force is the overall force that remains after all forces acting on an object are combined, determining its acceleration or deceleration.
When the forces are balanced, the net force is zero, by definition. "Net force" refers to the vector sum of all the forces acting on an object.
Net force is the sum of all the forces acting upon an object.
Ten newtons downward, by definition.
If you combine all the forces in your problem , using vector addition, the resulting answer is the "net force" As a simple example if you have a force of 10 N pointing right and a force of 3 N pointing left then because they are in opposite directions the net force will be 7 N pointing right.
a simple machine is a mechanical device
That's the definition of "net force", so you might say "always". This refers to forces acting on the same object. If there are time-varying forces, the answer might be never!
2 Newtons to the North 7-5=2 Simple math =)
The combination of all forces acting on an object is defined as the net force. Net force is the total force that results from all individual forces applied to an object, taking into account both the magnitude and direction of each force.
Newton's first law states that if the net force on an object is not zero, the object will accelerate in the direction of the net force. This acceleration is directly proportional to the net force and inversely proportional to the object's mass.
If the net force is zero, the forces are balanced. This means that all forces acting on an object are equal in magnitude and opposite in direction, resulting in no acceleration of the object.
Inertia will not be affected when "net" or "net force" is zero.
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