Thursday 15 December 2016

Understanding The Magnetic Torsion Accelerator

Posted by Unknown at 14:19
By Jeffrey Young


The relationship between angular acceleration and moment of inertia is very crucial when designing machine designs. The knowledge is even much important for the clients who may wish to retrofit their machines. To have a good estimate of the torques, you may have to use a specified magnetic torsion accelerator that uses a preset speed over a recognized period of time. To understand how the accelerator works, prerequisite knowledge in Physics is mandatory.

Angular velocity, which is measured in radians per second is useful when calculating the angular design of a machine. The reason is, torque is a product of moment of inertia and angular acceleration. In real life however, it is quite difficult to estimate the moment of inertia. Most crucial variables like inertia are not taken into account. Nonetheless, the method is still useful when establishing the baseline for component sizing purpose and approximating the torque requirement.

To fully generate the required magnetrons in each field, you will need an input of the external energy. For commercial use, the input should be 60 megahertz wavelength and a well-grounded conductor base. The voltage feed should not exceed 250 kilovolts on the inside and 40000 volts on the existing wave probe. For domestic use, these specifications will be a bit lower.

The magnetic field within the surge guide turns hydrogen gas into ions in the special confinement chamber. Hydrogen ions are then used to facilitate conduction of fields and energy. The three phase electric stators engender magnetic fields that turn into opposite directions. The parallel magnetic fields twist the flux path into the torsion field within the limitation chamber.

The magnetic confinement coil on the baseball induce the current to the spherical confinement chamber. Here, the induced current generates the mirror filed that compress the torsion field in the incarceration chamber. The inertia beam then passes via the electric stimulation stators which in turn unite it to the epicenter of the field. This process adds the cumulative energy that is released to various fusion reactions.

The energy generated from the entire torsion field is compressed with an aim of expanding it in the mirror field. The solidity of both fields is done to the inward. The interior compression of mutual fields boil the plasma completely to its fusion state. All the thrust diodes available accelerate directing its entire plasma outward. The specific induction stators continue with the exact storage of the required energy in the magnetic field.

The system works by converting the accelerated ions to direct electric output and then adding a coil to the entire thrust path. The current energy output is then converted to electricity via a means of heat energy in nuclear science. The said means include the liquefied salts as a primary heat exchange media. The medium is primarily used to boil water which is later used to drive steam turbines.

The entire finding works on the foundation of having an alternating current that is supplied to the various pairs of electric inductors and which in turn generate a magnetic field that rotates with the various oscillations of alternating current.




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