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Diagram 474b WOW! Fesbach Laser Oerstead Electric UFO Vacuum

August 9, 2017

Diagram 474b WOW! Fesbach Laser Oerstead Electric UFO Vacuum

the idea girl says
formula notes diagrams

page 172b notes I’ve redrawn Diagram 474b and 474a into a new set of steps. You can see at the top of the page UFO particle Vacuum collider. The cooled plasma rings form a big circle around the particles being collided.

Outside of the cooled plasma rings is the magnetic b field.On either side at the bottom are laser beams D, E.

it says low temperatures are inside of the vacuum particle collider engine.
The homogeneous magnetic B field also has “ground state molecules” in it as well as the laser beams on either side of the UFO engine’s design. The quantum matter is at it’s lowest quantum energy level.

The Quantum energy is at Landau levels with the super fluid fermions at a low temperature and the flow is at a low velocity thus the particle will have no loss of energy. Which creates particle at a Zero Viscosity.

From the lasers at D you will repeat a chirped cycle (3 laser pulses) using the atomic equations given to you in the notes. The laser beam,s start at a ground state level of molecules.

There are two types of electric currents happening. The Oersted electric currents will create magnetic fields and dipoles around the particles colliding in this UOFO Vacuum.

They al so make an amperian loop which if I am correct will pass around and in between the CORE UFO Engine which is a metal sphere levitating above and between the “crystalline Y structure of lattice mesh walls.”

This amperian loop will generate electricity which the levitating metal node sphere will generate a network of energy between two of the five engines seen in the UFO diagrams. As for the particle being collided there’s a few more added in Diagram 474b . We have neutrinos colliding with copper alloys.

In the middle is Fesbach molecule resonance surrounded by other particles. Ultra cold potassium rubidium molecules, ultra cold Krb molecules, 40 k fermionic atoms, ,ultra cold bosonic 87 rb atoms, bosonic atoms in a mixture of argon gas and quantum gas. it shows the super fluid fermions floating below the colliding particles and the area where laser beams D, E are place to create a linear path of laser beams that carry these particles through one side of D to E.

The laser beams create Thomas Youngs diffraction algorithms , atomic pulses , atomic pulse equations are applied here as well. so are we’ve seen four different laser beams, possibly six.

Higgs laser beams, proton laser beams, photon laser beams, thomas youngs atomic pulse beams, electron ribbon beams, pencil laser beams and each has it’s own set of functions and particle formula’s to go with each set of laser beam formulas mentioned from Diagrams 1 to 474. Diagrams 475 – 477 add more particle mixtures, laser beams equations and vacuum data.

see Diagram 475 notes next.

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