Algebraic geometry graceli n-dimensional relative.
Imagine a glass of water thrown in space, where every drop deforms me regarding the time and intensity of the pitch.
E3 + vx / [a] [t] [t, y, k, [n]. + For every drop of water in space.
Ellipse cubed + x variation with respect to time.
For acceleration, and observers [o, y, k, [n].
E3 + vx / [a] [t] [t, y, k, [n]. + [+ R, p, r, t] for every drop of water in space.
Ellipse cubed + x variation with respect to time.
For acceleration, and observers [o, y, k, [n].
[+ R, p, r, t] = rotation, precession, recession, oscillatory flows, translations]
The graceli hat, springs and the snake, and the flowmetry fit in algebraic geometry n-dimensional.
As well as the paradóxido the dog behind the owner. Where we have a differential variable and relative geometry with respect to observers.
Geometry related.
Imagine a balloon bursting full of papers. Where each part has its own deformation against time.
P + vx / / [v] / [t] to each piece of paper displacement in space.
To the observer [o, y, k, [n]. with the acceleration [a].
Pieces of paper ranging in relation to x time, velocity v, and observers.
Images pencil falling x with respect to time, a speed and acceleration.
Imagine various pencil falling deformed over time.
Imagine curved with infinitesimal flows with respect to time. As the paradóxido dog.
Imagine the waves that vary in intensity. And at the time.
Imagine precessing flow and recession and at the same rotational and translational movements in anomalous spiral with respect to time.
R + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t / t]
Graceli spirals with n-dimensional deformations and relative positions and relative to observer movements.
Movements in water fish, birds and animals streams that open over time and to observers. Soccer teams where each player every time and has its own form of geometric change over time and the observers.
And the twisted where each fan has its own geometry apparent ways in relation to time and to observers.
Infinitesimal geometry.
[Log a + log b] [n]
R + â + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t] / t =
[P / PPA + p / p P b] [n]
R + â + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t] / t =
[P / PPA + p / p P b - [sx [a, b]] [n
R + â + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t] / t =
- Sx = x sequence, the p / p P [n].
[P / PPA + p / p P + b [sx [a, b]] [n]
R + â + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t] / t =
[P / PPA + p / p P + b [sx [p / PPA + p / p P b]] [n]
R + â + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t] / t =
[PP ab +1]
R + â + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t] / t =
Trig on differential growth in relation to angle gradually increases as the spiral arms.
R + â + pr / pPr [n] / t [o, ya, kr, [n]. + [+ R, p, r, t] / t =
Angles, sides and sine, cosine, and tangent. Vary growth spirals and movements such as paradóxido dog behind the owner also moving, and these systems in rotation and translation.
Graceli theory of characteristics and types, and potential [relativity graceli].
Certain particles and certain energies contains its own characteristics and types to own interactions and transformations, as well as flows and changes in patterns and shapes.
And they also have characteristics and types of transformations production potential, interactions, effect-cause diffraction, spin angular momentum, and several other phenomena such as expansion, conductivity, vibrations such as metals, such as mercury dilations, transformations such as isotopes and decays.
Physical potential and relativities potential.
RG = t c + w.
Relativity graceli = characteristics and types + potential.
Theory unbalanced diagonal graceli unstable and indeterminate variability.
Axes of rotation of planets, rotating magnetic, gravitational fields, and to pass other and are in unbalanced diagonal axes.
This increases as the mass and diameter of the star and its gravitational and rotational mass.
And lower diagonal planets and this imbalance is greater than in larger planets. This is confirmed on the planets of the solar system.
In many cases rotation of the planet and the magnetic rotation not aligned that the rotation is already a gain phenomenon, that is, reached the screen because of the action of the magnetic rotating, however this action does not happen in absolute action on the rotation of the planets .
Ie has limited action, but has a small share, however this action builds up from previous actions.
It is how we see the eccentricities, where it is a path of previous actions, and where the present actions have less action than the phenomenon in its intensity, range and direction.
A corridor has a development as energy won before, but the energy of that moment acts on that energy already earned.
Φ = tG
tG=
I = Ra rmm = mec+ in.= iiiG


iiiG = INDETERMINISMO GRACELI.
Ra rmm = mec+ in.
Rotation of the star + rotation of the magnetic mass = energy Massa conquered + momentary energy.
And this is confirmed in stars with rotations with little diagonal, and very magnetic rotation unbalanced diagonal.
In other words, what we have is an unstable and uncertain system. And why some stars have rotation and translation with many slopes, and even eccentricities.
And these phenomena occur more in smaller planets.
Graceli theory of contradiction unbalanced diagonal.
However, this is what determines that biggest stars have smaller inclinations [diagonality and imbalances], and precession and inclinations, but has greater rotation and magnetic rotation.
And even though more diagonal variations and magnetic imbalance has smaller diagonality and rotational imbalance [precession].
Gravity also renders these unbalanced diagonal movements.
This difference between the two rotations is explained when we see that the mass of the earth is more robust and densified than the magnetic mass which is one type of energy into the displacement space, as the mass of the star is formed over the field where the very energy has difficulty pierces it.
This dynamic also produces a magnetic centrifugal action and centrifugal rotational inertia and which are the major players for the movement of precession and recession stars, and we see this more clearly in smaller stars. Where they are played out and build the expansion of the planetary system we are in, and other systems.
With this magnetism or the severity nor are constant, uniform, homogeneous, and are in rotation, centrifugal action, and centrifugal rotational inertia [out].
Relativity for variable speed, spin, spin action, angular momentum and rotational inertia.
+ Thermal increase, + increase of + electromagnetic vibrations increase.
Laws of inertia and motion graceli.
A scroll action on a body will depend on the dynamic and physical and inertial body itself.
If the action is front or side, or in the same direction of motion, where it has another action of inertia and physical and dynamic state of the body.
That is, if it is already on the move.
If the displacement is contrary or favorable.
It is curved concave or convex toward him.
If the energy state between mass and charge interactions particles and the fields is x or [n shapes and types and characteristics].
If you favor or against inertia, has the centrifugal inertia, centripetal or if the angular momentum is high or low transformation.
And as all these phenomena tend to vary according to the intensity you are in the velocities and accelerations of them.
As the energy state, inertial, or low or high speed tends to vary that, vibrating, oscillating and deform in space, and also have offsets for all possible sides.
This can be seen particulate, or even supersonic when passing through the space.
The sound and the light also undergo these variables and phenomena underlying the laws of graceli movement.
Where we have relative displacements, changes in the mass and in the external environment as well as the internal particles and bodies, and changes in rotational inertia centrifugal action at the time of modifying the angular momentum and the angular inertial mass, or even when mass independent processing to be bend or not.
With this the law of graceli movement based relativism and indeterminalidade of the very dynamic action.
Evidence of graceli laws of inertia and movement.
These variations also happen in magnetism actions within stars, in atmospheric movements as we see in Jupiter, and the centrifugal movement of gravity as we see when comets approach the sun or giant planets, where the orbits undergo changes, long to short , short to long, retrograde to normal, and vice versa. And changes in the eccentricities and inclinations, and precession in recessions.
Another point is the refraction and diffraction of light and gamma rays former, and radiation in space, where dynamic and inertia lose intensity with refraction and diffraction, but in return gain from the means of transformations and thermal and fields in space, or is, occur compensation losses with gains.
In other words, what we have is a system of interactions and transformations of losses and gains both in space and within matter and energy itself.