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Paul Lowrance Free Energy Research on Magnetic Material

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Main PageFoundationThermodynamicsDetailsEnergizeDataSynopsizeComputer SimulationStarting your own Research

Research and Development QuestionsUpdate


Note 
This project and research requires no funding or payments of any kind. No payment is requested nor has any ever been accepted for this project and research. This researcher has the necessary equipment and money to continue this project and research.
Update
Please go to Site:MEMM for the latest research.


Paul Lowrance Free Energy Research on Magnetic Material

Summary 
The premise of this project is based on experimental data in addition to computer simulations. The results strongly suggest that energy may be extracted from material at room temperature by magnetic material. Such a machine will work in nearly all natural conditions on Earth. Basically, the machine is an Energy Mover. It moves energy from the magnetic material to a destination such as an appliance. Included in this project, for the purpose demonstrating energy extraction, is a proposed free energy device. It is suggested that such a device would remove heat from the magnetic core. In such a case, the core within the device would become cold. The energy would be converted in the form of electricity. Any such appliance such as a TV that utilizes the electricity would generate heat. Therefore, such a system moves energy from point A to point B. By means of utilizing basic classical magnetic and electromagnetic equations, computer software simulations were created. Such computer simulations are presently predicting such an energy exchange in addition to numerous other effects such as the Magnetocaloric effect. At present, a finalized robust version of the software is under construction. This software will be used to verify existing solid-state free energy designs in addition to construct a finalized efficient machine. When completed, the machine will be built to test the proposed theories in this paper. This project was commenced publicly on Feb. 28th 2005.


THIS PAGE IS LOCKED FROM EDITING. If you have a change to recommend, then please contact me. If you are doing research in this field then please add to the Research and Development Questions web page.


Contents

Foundation

This research is based on well tested math equations used to predict the magnetic and electromagnetic fields from a current. By using such equations, a computer program can predict the outcome. This research is based on a strong foundation that can be tested by plugging in real life tests to see if the program successfully predicts the outcome. Please go to Foundation


Thermodynamics

A small section on the 2nd Law of Thermodynamics describes a simple example to demonstrate that the law is inaccurate when used on the atomic level. Please go to Thermodynamics


Details

This is the meat of the research paper. Please read the Foundation before continuing to the Details page. Additionally, please read through the short Synopsize.


Data

This research is based upon numerous well-known effects and data. Please go to Data


Synopsize

A summarization of the energy exchange process on an atomic level. Please go to the Synopsize


Computer Simulation

This research emerges into computer simulations. By using very basic classical physics equations to calculate the magnetic and electromagnetic fields, computers can predict very complex situations that the human mind could never see. This is software based on small segments of magnetic materials and is not attempting to simulate magnetic materials on the atomic scale such as in the case of Ising simulations. Please go to Computer Simulation


Starting your own Research

Reference material so that anyone can start their own research in the field of extracting free energy from magnetic materials. Please go to Starting your own Research


Research and Development Questions

For those who are interested in this research, please edit Research and Development Questions


Discussion Group

This project was initially announced on numerous web forums on Feb. 28th 2005. A few such locations are:

Original paper

Original paper was reprinted at PESN.


Contact

Contact me

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