Work is done when a force acts on an object as the object moves from one place to another. Work is defined as force times distance.
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.
resistance force.
The work done is calculated as the product of force and distance moved in the direction of the force. In this case, the work done is 15 Joules (10 N * 1.5 m).
is moved
In order for work to be accomplished according to the scientific definition, a force must be applied to an object, causing it to move in the direction of the force. Work is done when this force causes the object to be displaced.
When an object is moved by a force, work is done, increasing or decreasing its kinetic energy, often but not always decreasing or increasing its potential energy.
Work is applied to an object and the object is moved over a distance in the same direction of the applied force.
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.
resistance force.
is moved
work
The work done is calculated as the product of force and distance moved in the direction of the force. In this case, the work done is 15 Joules (10 N * 1.5 m).
is moved
The object is moved and energy is transferred.
In order for work to be accomplished according to the scientific definition, a force must be applied to an object, causing it to move in the direction of the force. Work is done when this force causes the object to be displaced.
Mechanical energy is transferred by a force to a moving object.
The amount of force multiplied by the distance an object is moved is called work. Work is a measure of energy transfer and is calculated as force multiplied by distance in the direction of the force.