I believe that when you say 'lifted through', you mean lifted to a height of 10m. If so, the amount of work is such:
Work= Force x Distance which have the units (Joules = Newtons x meters)
When the object is lifted, it increases in its potential energy. The equation for this is:
Potential energy = mass x gravitational force x height
= 4.5 x 9.81 x 10
=441.45 Joules
As 1 joule = 1 newton x meters and we have 441.45 Joules,
441.45 joules of works is done! :D
The work done by the forklift is equal to the force exerted multiplied by the distance lifted. To calculate work, we need to know the force exerted by the forklift and the distance the object is lifted. The work done is given by the formula: Work (W) = Force (F) * Distance (d).
No, changing the distance of a ramp in an inclined plane does not affect the amount of work being done. Work done on an object on an inclined plane is only dependent on the vertical height through which the object is lifted, not the distance along the inclined plane. Work done is calculated as the force applied multiplied by the vertical height.
Work is done when a force acts on an object causing it to move through a distance in the direction of the force. Work is the product of the force applied and the distance over which the force is applied.
Work is done on an object when a force is applied to move the object through a distance in the direction of the force. The amount of work done is equal to the force applied times the distance the object moves.
The work done in lifting an object is positive, as energy is input to move it against gravity. The work done in lowering an object is negative, as the object is moving in the direction of the force of gravity, and energy is being released. Overall, the work done will depend on the distance the object is lifted or lowered and the force applied.
Work is done.
The work done by the forklift is equal to the force exerted multiplied by the distance lifted. To calculate work, we need to know the force exerted by the forklift and the distance the object is lifted. The work done is given by the formula: Work (W) = Force (F) * Distance (d).
No, changing the distance of a ramp in an inclined plane does not affect the amount of work being done. Work done on an object on an inclined plane is only dependent on the vertical height through which the object is lifted, not the distance along the inclined plane. Work done is calculated as the force applied multiplied by the vertical height.
use the formula W = mgs W stands for work done in joules m stands for mass of the object g stands for gravity s stands for the distance the object is lifted W = mgs W = 78kilograms•9.8m/s2•6meters W = 4586.4 J (joules) answer would be 4,586.4 J
Work is done when a force acts on an object causing it to move through a distance in the direction of the force. Work is the product of the force applied and the distance over which the force is applied.
Work is done on an object when a force is applied to move the object through a distance in the direction of the force. The amount of work done is equal to the force applied times the distance the object moves.
distance
WORK as is scientifically defined.
The work done in lifting an object is positive, as energy is input to move it against gravity. The work done in lowering an object is negative, as the object is moving in the direction of the force of gravity, and energy is being released. Overall, the work done will depend on the distance the object is lifted or lowered and the force applied.
Work is done when a force causes an object to move through a distance. The amount of work done is calculated by multiplying the force applied by the distance the object moves in the direction of the force. If the force and the displacement are perpendicular to each other, work done is zero.
Moved. Work is defined as a force acting on an object through a distance.
Work is done when a force causes an object to move in the direction of the force. The amount of work done is calculated as the product of the force applied and the distance over which the object moves. Work is a measure of energy transfer.