The work done on the object is calculated using the formula Work = Force x Distance. In this case, the work done is 50 N (force) x 15 m (distance) = 750 joules.
The net force acting on an object determines the acceleration of the object in the direction of the force. If the net force is in the same direction as the object's motion, the object will accelerate in that direction. If the net force is in the opposite direction, the object will decelerate or change direction.
When an unbalanced force acts on an object, it will cause the object to accelerate in the direction of the force. The greater the force applied, the greater the acceleration of the object. The direction of the force will determine the direction of the object's motion.
An applied force will move an object in the direction of the force.
When a force is applied to an object in the direction of the force, work is done on the object. Work is defined as the product of the force applied and the distance over which the force acts in the direction of the force. Therefore, when an object is moved in the direction of the applied force, work is performed on the object.
it will move the object that the force i pushing it to Example: Force---->Object------> the object is moved in the direction it is being pushed or pulled by the force
The net force acting on an object determines the acceleration of the object in the direction of the force. If the net force is in the same direction as the object's motion, the object will accelerate in that direction. If the net force is in the opposite direction, the object will decelerate or change direction.
When an unbalanced force acts on an object, it will cause the object to accelerate in the direction of the force. The greater the force applied, the greater the acceleration of the object. The direction of the force will determine the direction of the object's motion.
Yes. If there is an unbalanced force on an object, the object will always accelerate in the direction of the force.
An applied force will move an object in the direction of the force.
When a force is applied to an object in the direction of the force, work is done on the object. Work is defined as the product of the force applied and the distance over which the force acts in the direction of the force. Therefore, when an object is moved in the direction of the applied force, work is performed on the object.
it will move the object that the force i pushing it to Example: Force---->Object------> the object is moved in the direction it is being pushed or pulled by the force
When an unbalanced force is applied to a moving object, the object will experience acceleration in the direction of the force. If the force is in the same direction as the object's motion, it will speed up. If the force is in the opposite direction, it will slow down or change direction.
An object will accelerate in the direction of the net force acting upon it. If multiple forces are acting on the object, the net force is the vector sum of all the individual forces, and the object will accelerate in the direction of this net force.
The product of these two numbers, assuming the force acts in the same direction as the object moves.
No, the acceleration of an object is in the direction of the net force applied to it. If the net force is in the same direction as the object's motion, the acceleration will be in the same direction. If the net force is opposite to the object's motion, the acceleration will be in the opposite direction.
A force does not do any work on an object when the object does not move in the direction of the force or when the force is perpendicular to the direction of motion. Work is only done when there is displacement in the direction of the force.
The forces cause the object to move in the direction of the net force. If there are two unbalanced forces in opposite directions, the object will go in the direction of the stronger force.