The work done in this case would be zero.
Work is a measure of energy transfer that happens when an item is moved across a distance by an external force that is applied in at least part of the displacement direction. Work may be calculated if the force is constant by multiplying the length of the path by the component of the force operating along the path.
To put this notion into mathematical terms, the work W is equal to the force f multiplied by the distance d, or W = fd. The work done when the force is applied at an angle θ to the displacement is W = fd cos θ. Work on a body is done not only by moving the body as a whole from one location to another, but also by compressing a gas, spinning a shaft, and even producing invisible movements of the particles within a body by an external magnetic force.
Therefore, in this case, the work done is zero.
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