If a glass marble is placed on a level surface, the only forces are gravity (which prevents the marble from floating off the surface), and the lack of lateral force (it is not pushed by hand), and friction as the surface is level. One could assume, that only in a vacuum jar, would the marble have zero force. But then, surely, the earth gravity must still have some effect?
NO. not at all b/c torque is directly related to force
Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.
No, not all forces will cause an object to accelerate. For an object to accelerate, the net force acting on the object must be non-zero. If the net force is zero, the object will either stay at rest or continue to move at a constant velocity.
The net force acting on an object at rest is zero. This means that all the forces acting on the object are balanced and there is no overall force causing it to move.
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.
The forces are all balanced.
NO. not at all b/c torque is directly related to force
0. An object in equilibrium has constant velocity, which makes its acceleration 0. Since net force=mass times acceleration, this would make the net force zero. Note that there could be multiple forces acting on the object, but since it is in equilibrium they would have to be equal and opposite in direction, to cancel all of the forces out. This would make the net force zero.
It means the same. When the vector sum of all forces that act on an object is zero, the forces are said to be balanced.
Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.Net force is the sum of all forces that act on an object. An unbalanced force means that net force is not equal to zero. If that is the case, the object will accelerate.
No, not all forces will cause an object to accelerate. For an object to accelerate, the net force acting on the object must be non-zero. If the net force is zero, the object will either stay at rest or continue to move at a constant velocity.
When an objects net force is zero, its acceleration is zero. No force , no acceleration.
Balanced forces mean the net force is zero, so they are not the same unless net force is zero. Net force is the vector sum of all forces on an object
The net force acting on an object at rest is zero. This means that all the forces acting on the object are balanced and there is no overall force causing it to move.
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.
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.
Net force is defined as the overall force acting on an object. When a cat sleeps on a table, the net force on it is zero. When a body is at rest the net force acting on the body is zero.