Work.
It can't be calculated with the information given.Work is defined as (force) multiplied by (distance).The mass can be moved fast, by pushing it hard, or slowly through the same distance,by pushing it with less force. The work is different in each case, since it depends on theforce and the distance.Notice that the work doesn't depend on the mass, only on the force used to move it.
force x perpendicular distance from a specific, defined point
Work is defined as the dot product of force times distance, or W = F * d = Fd cos (theta) where theta is the angle in between the force and distance vectors (if you are doing two dimensions). In three dimensions, use the standard definition for the dot product (using the component form of the vectors).
That's the definition of "work" ... (force exerted) times (distance through which the force acts). If you push against the end of a lever with a force 'F' and move it through a distance 'D', then (F x D) is the work you put into the lever.
No. Work is transferred energy. When you do work, you are transferring energy. If the force is constant over time: Work = F*d*cos(theta) where F = force d = distance object travels over the time the force is applied theta = angle between force and the displacement of the object The only component of the force that can do work is the component of the force that is parallel to the displacement.
The term defined as the size of the force multiplied by the distance through which the force acts is work. Work is calculated as the force applied in the same direction as the displacement multiplied by the distance moved.
work
The term is torque. Torque is a measure of how much a force acting on an object causes that object to rotate. It is calculated by multiplying the force applied by the distance from the axis of rotation.
Work = force x distance traveled (only when the force and distance are acting in the same direction)
In Physics, work is defined as (force) multiplied by (distance). According to that definition, if either force or distance is zero, then work is zero. That means that no matter how hard you push on a brick wall, no work is done, because your force acts through zero distance.
Work W. The dot product of Force and Distance through which the force acts is called Work . W=F.d
Torque is defined as force multiplied by the distance, from the axis of rotation, at which such as force is applied.In the case of an engine, I believe the torque would have to be measured.
WORK as is scientifically defined.
The greater amount of work is defined as the work done against a force over a distance, which is equal to the force multiplied by the distance moved in the direction of the force. It is a measure of energy transfer and is represented in joules.
Applying force through a distance is called work. Work is defined as the exertion of force over a distance that results in the transfer of energy.
The force that moves an object over a distance is called work. Work is defined as the application of force over a distance, resulting in the displacement of the object. The amount of work done is equal to the force applied multiplied by the distance moved in the direction of the force.
No, work is defined as the force applied to an object multiplied by the distance the object moves in the direction of the force. If the object does not move, then work is not done on the object.