Uploaded April 2016 | Updated September 2026, 2 days ago
Here we see how an oscillating PM field can influence transformer action. Although the primary coil is responsible for providing the energy required to oscillate the PM,the energy returned by the oscillating PM seems to be greater. This can be seen through both the reduction of P in to the primary coil,and also the increase in output to the secondary coil. There is also the fact that power is also being dissipated by way of vibration through the heavy work bench.
More energy being dissipated through the load resistor on the output of the transformer--more energy being dissipated by way of vibrations through the work bench,and also energy required to create the oscillation of the PM,all this,and the P in go's down-not up.
Here we see how an oscillating PM field can influence transformer action. Although the primary coil is responsible for providing the energy required to oscillate the PM,the energy returned by the oscillating PM seems to be greater. This can be seen through both the reduction of P in to the primary coil,and also the increase in output to the secondary coil. There is also the fact that power is also being dissipated by way of vibration through the heavy work bench.
More energy being dissipated through the load resistor on the output of the transformer--more energy being dissipated by way of vibrations through the work bench,and also energy required to create the oscillation of the PM,all this,and the P in go's down-not up.










