For an object to move, a force must be applied to overcome any inertia or resistance to motion. This force can be exerted by external sources like gravity, friction, or propulsion systems. Additionally, the object must be free to move without any constraints that would prevent its motion.
In order to do work on an object, the object must move in the direction of the force applied. If the object does not move, no work is being done on the object.
In order for an object not to move, the forces on it must be balanced. This means that the net force acting on the object is zero, resulting in no acceleration and thus no movement.
In order for work to be done, two things must be present: force and displacement. Force is applied to an object to move it, causing it to undergo a displacement in the direction of the force. Work is calculated as the product of force and displacement in the direction of the force.
An object must be subjected to a force in order to make it move or stop. This force can come from physical contact, such as pushing or pulling the object, or from non-contact forces like gravity or magnetism. The type and intensity of force applied determine the object's motion.
An astronaut has to exert a force on a weightless object in order to move it because in space, there is no gravity to naturally pull or push objects. Therefore, the astronaut must apply force to overcome inertia and move the object.
In order to do work on an object, the object must move in the direction of the force applied. If the object does not move, no work is being done on the object.
In order for an object not to move, the forces on it must be balanced. This means that the net force acting on the object is zero, resulting in no acceleration and thus no movement.
unbalanced
In order for work to be done, two things must be present: force and displacement. Force is applied to an object to move it, causing it to undergo a displacement in the direction of the force. Work is calculated as the product of force and displacement in the direction of the force.
The force must couple to the object. The point of application of the force must be able to move in the direction of the force.
An object must be subjected to a force in order to make it move or stop. This force can come from physical contact, such as pushing or pulling the object, or from non-contact forces like gravity or magnetism. The type and intensity of force applied determine the object's motion.
An astronaut has to exert a force on a weightless object in order to move it because in space, there is no gravity to naturally pull or push objects. Therefore, the astronaut must apply force to overcome inertia and move the object.
No, a horizontal force that is less than the weight of an object will not be able to move the object. In order to move the object, the horizontal force must be greater than or equal to the weight of the object.
In order for work to be accomplished, there must be a force applied to an object and the object must move in the direction of the force. Work is the product of the force applied to an object and the distance over which the force is applied.
To move an object at rest, you must apply a force to overcome the force of static friction that is keeping the object stationary. Ensuring that the applied force is greater than the force of static friction will allow the object to start moving.
An external force must be applied to the object in order to overcome inertia and initiate motion. This force must be greater than any frictional or opposing forces acting on the object to cause it to start moving.
-At least part of the applied force must be in the same direction as the movement of the object. -The applied force must make the object move. APEX ANSWER!! <3;&Dweeb