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Quantum Engineering & Physics
Beyond probability. This section all stems from predictable quantum physics via quantum engineering or forced oscillation.
Remote/Aerial Surveillance Human Identification
Human beings each have a different and unique electromagnetic glow, generated by their nervous system. Semiconductor sensors will detect that electromagnetic, Matinga noise floor and it is more perceivable if amplified and database filtered by a computer database. The algorithm for Matinga noise floor can be reviewed in the article, Matinga Quantum Noise Floor Quantified. The immediate sensory device is a point radar antenna (see the Point Radar article in this blog). The fol
Sydney Matinga
May 172 min read
Potential Difference - the Full Definition
Potential difference is the total acceleration which exists between two positions in space. The displacement may be derived from any form of energy. The most well known potential difference is that potential difference of electrical energy known as voltage. Gravity at one height and gravity at another hight represent gravitational potential difference or total gravitaional acceleration. In technology, it is recognised as amplification. Examples (1) The electrical potential di
Sydney Matinga
May 151 min read
Simultaneous Equations Transposed & Expressed for IT
(1) y = C + x , (2) y = 3 * C + 4 * x ; (3) y = C + x , 3 * C + 4 * x ; Comma separated variable format (4) y = C + x , (5) y = 3 * C + 4 * x , from (4) + (5) (6) 2y = C + x + 3 * C + 4 * x (7) y = ( 4 * C + 5 * x )/2 Simultaneous equation format (8) y = ( a [ 1 ] * C + b [ 1 ] * x + a [2] * C + b [2] * x + a [3] * C + b [3] * x + . . . + a [ n ] * C + b [ n ] * x ) / n © Xerqon ABN 97661410108 2026
Sydney Matinga
May 61 min read
Fractal Mathematics
All mathematics is sequential. Labelling each sequential element with a event space designation is the beginning of fractal expression. The most convenient event space address to use is a numerical label or a timestamp by another definition. "n" is used rather than "x". "n" represents natural number sequences or natural events rather than "x" which represents contiguous real numbers. Example y = n , n = a [ 1 ] + a [ 2 ] + a [ 3 ] + . . . + a [ n ] , y [ n ] = a [ 1 ] + a
Sydney Matinga
May 31 min read
The Quantum Field Equation & Universal Field Equation
Q = constant charge q = variable charge, V = quantum field W = q * V, W = V * sin ( I * t + Q ), (The above is the Quantum Field Equation or the Universal Field Equation) W = V * sin ( q + Q ) V = r * sin ( i + I ) V = sin ( r + R) * sin ( i + I ) V = sin ( v + V) Voltage (magnetic flux) is the quantum component of e
Sydney Matinga
Apr 232 min read
Quantum Computers
All computers are electromagnetic in their operation. To take the value of the relativistic computers - all current computers - to exclusively quantum performance they must be inductive rather capacitive in the logic and power control components. To achieve this all RLC circuits in the CPU and the remaining integrated circuitry must be high frequency filtered to render the capacitors short circuits in the computer. That will pass only voltage for frequencies of above UHF. No
Centreweave
Mar 161 min read


Quantum Telecommunications
The Law of (Quantum) Entanglement Quantum entanglement or superposition is synchronous amplification alignment - Sydney Matinga, 2026 Amplitude Modulation Wave The wave above is produced from the algorithm, n ε [natural numbers] a = n + 1 Please select "n" as a large number which not a power of 10 A [inner-join] = Sin ( x ) //where x = θ, ω * t. It will require programming or its pre-scripted programming copied from the worldwide web// Sin ( ω *
Centreweave
Mar 164 min read
Quantum Revolution or Voltage versus Time or Current Spin
In simple terms, the format for direct voltage is constant revolution in one direction of electromagnetic flux through the length of a conducting circuit. Direct current is constant electric spin or rotation perpendicular to quantum revolution. Voltage is electric revolution. Current is magnetic spin or rotation. Alternating power sees the voltage or magnetic flux in simple oscillation, accelerating back and forth along the conductive circuit. The time or current rotation osc
Sydney Matinga
Mar 81 min read
Wave or Quantum Causality Quantified
When expressing wave or revolutionary equations, in physics, reverse causality must not be invoked. It does not exist in nature so it cannot be describing nature if used. Physics only describes nature. Engineering is the application of physics. On the basis of that logic, reverse causality does not belong in engineering either. In nature, the direct electric current exhibits flux, described by the A = sin ( θ ) relation. The expression is quantum as the amplification is a fac
Sydney Matinga
Mar 81 min read
Quantum Encryption
To encrypt one wave or to render it private, arithmetically combine (add) another wave amplitude to it. It forms a hybrid wave or hybrid amplitude. Since amplitude is causality (see the blog article Wave or Quantum Causality Quantified ), a new causality or causal, dependent dimension is established. Privacy is guaranteed if a unique and private frequency is used for the encryption key. Example Wave interference, even in 2 dimensions, is prohibitively difficult to track and f
Sydney Matinga
Mar 11 min read
Matinga’s Law of Quantum Relativity
Quantum Relativity or Simply ‘Relativity’ Please see the final analysis on Matinga's Relativity - Special & General Relativity in one simple equation. Relativity can only make causal sense when considering one observer’s perspective at any given time. Two simultaneous observer orientations as observer breaches relativistic causality. When working with height, sine is easier to understand than sine squared. For example waves, nature causality of no negative time evolution dict
Sydney Matinga
Dec 12, 20252 min read
Matinga Noise Floor Quantified
Matinga’s Quantum Dependency - Noise Floor Function All events and systems in physics and in any form of communication must contain some a priori - earlier information shared between communicating portions of the system. This means any detection (absorbing/reading) of any signal or energy transfer is only possible if the fundamental, unscaled or unamplified energy element is in both emitting/writing portions. This means the quantum randomness must be re-designated the term qu
Sydney Matinga
Dec 12, 20252 min read
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