Meta Material that Acts as a Permanent Energy Source

Authors : Ahmed Nabil Badawi Youssef

Volume/Issue : Volume 7 - 2022, Issue 8 - August

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Currently, the world Confront a highly massive disaster called climate change that is caused by the usage of fossil fuel as an energy source this disaster can threaten the stability of the world economy further it will destroy the world, spread harmful diseases, as well as current clean energy resources, are so expensive and not highly effective such as solar energy that its efficiency is decreased by dust and clouds. So, I create the modeling of metamaterial that acts like a battery that doesn’t require any external energy such as solar energy or wind energy, where it can be a permanent energy source to save the world from this highly massive disaster and present definitive solutions for climate change and energy crisis in the world. This metamaterial generates a new form of energy called molecular strain energy, where molecular strain energy result from electron-electron repulsion that represents the greatest energy in the universe , the amount of electron-electron repulsion depend on electron density as the electron density is greater as the electron-electron repulsion is greater hence greater energy will generate , the highest electron density orbital on atom is 1S orbital due to the nearest to the nucleus and has the smallest size , to get the highest energy ( highest electron-electron repulsion) it must be the distance among each two electrons equal diameter of electron and must be all electron of atom occupy 1S orbital only , where 1S orbital can accept infinity number of electrons due to 1S orbital is spherical orbital that can contain all symmetry elements and it is divided into infinity number of sub-orbitals has positive phase but this event can’t happen in the nature , so it is necessary to create new metamaterial do this event and this metamaterial is called molecular strain energygenerating metamaterial, this metamaterial act as molecular strain energy-generating metamaterial when it is exposed to so tiny ferromagnet The metamaterial must be at nanoscale and the distance between ferromagnet and metamaterial must be at the nanoscale or less to ferromagnet can motivate metamaterial to produce molecular strain energy.

Keywords : Molecular strain energy, Photonics, plasmonic, graphyne, Metamaterials.


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