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Research & Development

Zero Theory: w = (x³ ± 1)

Quantum computing has taken over the digital age as experts agree that silicon is no longer a commodity in lieu of a new processor.

This system supports two Hydrogen atoms to complete a superposition defined as two qubits in length.  Where, currently the smallest model uses 20 qubits.

At a length of 5 qubits the electron is in the same location.  A qubit containing unlimited states is known as a superposition where a pair of electrons are in the same place.

How to transfer data between a neutron, proton and electron?  I assume this takes place during superposition.  Where, any applied form of data transfer is accepted.

Select what shell each particle resides in.
Now?  Make a superposition in a shell.  Transistor between cation and anion on a quantum level.  The nanotube should either be 3 or 5 qubits in length.

Thus.

Divvy up spin between particles equal to 100%.

As.

Coherence: Data positions are orbiting in unison.
Decoherence: Data positions are not orbiting in unison.

Research each position here.  As, superposition results in clockwise and counterclockwise.

Coherence => Decoherence => Coherence

Application
 

Advanced solar.
Clean hydrogen.
Computer systems.

Light contains two particles on each wave per quantum state.  Reaching the same position at the same time.

Superposition ⇔ Entanglement

Proof
“Powers versus arithmetic.”

(x² + x²) = 2x² 

(x² - x²) = 0

(x ⋅ x) = x²
(x ÷ x) = 0 or 1

(-x + x) = 0
(-x² + x²) = 0 


(-x ⋅ x) = -x² or 0
(-x ÷ x) = -x² or -1

Where?

The Zero Rule marks an empty exponent equal to 1 where my belief is that the answer is 0.  May describe when earth's magnetosphere displays flipped nodes.  In final the aforementioned addition and subtraction should yield the same result as multiplication and division.

1 qubit atom ⇔ 3 qubit nanotube ⇔ 1 qubit atom

Set the field to a 5 qubit superposition from the middle to maintain entanglement and coherence.  Set spin at 20% or 25% per each qubit.  Find results at 5’ to 3'.

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