A Matter Of Energy - Matinga's Law Of Relativity
- Sydney Matinga
- Aug 5
- 4 min read
Updated: Aug 8
For my greatest young inspiration beyond Physics, Emily Matinga.

From Energy, Work And Heat To Relativity
Let us begin with a clarification of heat as a dimension of Physics. Heat has beenu defined as thermal energy transferred. It is measured in Joules which alludes to its being confirmed as a form of energy.
Energy is the supply of power potential.
Work is energy demanded.
Heat is catalytic energy, and it is known as mass loss or as thermal heat loss (to the system observed).
Heat = Energy - Work
Potential energy is full power potential minus power liberated.
Electromagnetic energy is matter evolved to motion
U = E - K
Motion evolves to electrogmanetic energy as in the direction of acceleration of the mass. Electromagnetic energy fields will evelove to matter in the opposite direction of acceleration by any gravitation force or voltage (magnetic force). The former is generated by a mass accerating in the opposite direction of the electromagnetic field's flux. Mass always exists ins the context of energy as the magnification of two rotational dimensions of light speed. That is described by as
8. E = m * c ^ 2.
There is only one speed. It is the speed of light, c. Velocity is derived from a change of direction of obesrvation rather of true change of direction of motion. An anticlockwise orbit as observed concectrically from above, remains anticlockwise in direction and of alternative, relative speed when observed from a non-concentric arc still above the arc or circle of revolution.
To observe from below the arc of revolution is to change the apparent direction of motion to the opposite, clockwise direction. Velocity is a relativistic element of physics rather the full non-relativistic set of observed dimensions. I.e.
9. ρ = m * c ^ 1,
where the approximate equivalent is
10. W ~ m * ( c ^ 1 ) * ( c ^ 0 ). W ~ ρ. From the perfectly concentric or rotational point of observation of revolution there is one relativistic and rotational dimension (or real dimension) of speed. When observation is linearly parallel (or edgewise) to the arc of rotation there is only zero dimensions of rotation. I.e.
11. ρ = m * c ^ 0, 12. ρ = m, and
13. W ~ m * ( c ^ 0 ) * ( c ^ 0 ). W ~ m.
Spacetime similary cannot exist in isolation. The lowest amount of any dimensions scalar or harmonic is its inverse. 13. would be most appropriately expressed as
14. W = m * (1/z ^ 2) m ^ 2 / s ^ 2, where
15. z = 2.99792458 * 10 ^ 8.
The independent unit are kg * m ^ 2 / s ^ 2, and the dependent unit is J. Momemtum, ρ, is similar transposed.
For any dimensions of physics, δ 16. δ [ P ] = sin (θ ) * δ Matinga’s Variable That is Matinga's Law Of Relativity.
From Albert Einstein's declaration of spactetime being of for dimensions (in straight, infinite field lines) the Energy relation which he described was 17. E = m * c ^ 2, 18. m * ( λ / T ) ^ 2 λ and T are constants That elicits two dimension (2 powers) of wavelength (diameter of particle rotation) and the time eveloved to complete on rotation of the swept arc, θ, or of the time taken for oscillation of the wavelength or twice λ. Mass was ignored. It can not be isolated. Instead, mass is at its lowest value of 1/n kg, where n is the maximum possible mass. That would be the mass of all motion and heat in the universe, independently. The dependent resultant is the mass of the universe from K + U, respectively. E is the correseponding resultant. The only conclusion is that the universe or spacetime is Energy in the form of matter, E or m * c ^ 2. Motion can be defined as waves of work propragtion through the material medium. All other matter is of inverse harmonic proportion to the that of spacetime. That form the basis of a concept promoted by an astromer, Karl Sagan as the Tesseract - self similar harmonic dimesions of a medium within itself. For any velocity different from c. I.e v is less than c producing the the result 19. W = m * v ^ 2 a simpler and less logically cumbersome result from that of Isaac Newton From that example 20. W = m * ( d / t )
d and t are both variable dimensions or time evolutions, where t is the fundamental time evolution variable dimension or simply the time evolution. Less than the unit of δ is still considered relativistic δ or δ [ P ]. All non-unitary dimensions or all time evoltions of both inverse or proper harmonics (scalars) are relativistic, including the similar example with all acceleration, including gravity. All acceleration is gravity based on the mass associated with the matter or energy, in the gravitational system.
Matinga's Law Of Gravational Relativity
W = cos ( θ ) * ( m [ 1 ] - m [ 2 ] ) * G * h ,
where G = universal gravity or universal acceleration. Change in the wavelength of the electromagnetic field between two masses, as seen in sin ( θ ), changes the full distance between them. That will change the gravitational work.
Physics is the fundamental calculus of reality
© Sydney Matinga 2026



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