The discussion in this thread has moved well beyond the B level of the original question. This is not a bad thing - communicating to the original poster that there's more going on here than just the simple answer is part of a good answer.
However, it might be possible to word the original question more precisely, so as to be able to give it a simple answer. Looking for the question implied by #5 of this thread ("has anyone tried weighing a spinning disk?"):
I am at sitting on the surface of a non-rotating earth, a situation which we will idealize as maintaining constant ##r##, ##\theta##, and ##\phi## coordinates in Schwarzschild spacetime. In front of me is a spring scale, and on the spring scale is a black box. The black box has two electrical terminals on the outside. I apply a potential difference (hook up a standard automotive battery charger?) to these terminals and find that there is a current flow. So I am doing work on whatever is in the box, and I can calculate the amount from the voltage drop and current flow. The reading on the spring scale will increase. The increase, for a given amount of work, can be calculated from ##E=mc^2## if the mechanism inside the box is a resistor dissipating heat. Will the increase be different if instead the mechanism is an electric motor spinning up a flywheel?