Integrated system : pure mathematical physics , geometry , and .
Relativistic geometry Graceli flat - oscillatory curve.
Calculation Graceli oscillatory transcendental differential and integral areas and lines.
Geometry Graceli oscillatory and oscillatory integral calculus Graceli .
Author : Luiz Ancelmo Graceli .
Calculus of flat areas , curves , discontinuous and irregular .
Area boundaries for l , l , the [ lati , long , alt . ] .
Movements and accelerations and oscillations inside and outside , concave and convex .
Alternating concave and convex parts , and dangling the position of lla , cc concave and convex cx .
= f + Lla + â [grau] [+ - cx ou cv], alt. cc, + osc
ângulo cv, ou cx + rot, + transl. + acel.
Sum of parts . S sequential S with concave and convex curves .
SS = sequential infinitesimal sum Graceli [ logx / x ... n ] .
Llam = four-dimensional system Graceli = latitude , longitude , height and oscillatory movements over time .
M = movement.
The alternancidade = cc , cx , number positive, negative and zero dollars.
TO = infinitesimal and sequential areas .
= ay + an + .... Llam logx / x n ... [ [ A] * R , 0 -R [ A]
logx / x + â .... [ degree ] [ logx / x .... + n - cx or hp ] , [ A] cc , + logx / osc .... xn cv angle , or cx + rot , + transl. + Acceleration.
A = number system that alternate until the last [ -R ] returns to top [ + R ] , and returns to the system through the multiplication or division of 0 [ zero ] .
For a system of waves forming figures and areas [see symbol = lambda waves ] .
= ay + an + .... Llam logx / x n ... [ * R , 0 -R [ A] logx / x + â .... [ degree ] [ logx / x n .. + .. - cx or hp ] , [ A] cc , + logx / osc .... xn cv angle , or cx + rot + transl. + Accel .
More elements waves.
For a system of interconnections between points forming a system of lines forming regular and irregular waveforms and oscillatory movements and figures .
Point g to h has an interconnection of concave or convex lines cck CXK , and what parts is parts is concave and convex cc cx and follows the following formula:
= Cck , CXK Llam + logx / x n ... [ * R , 0 -R [ A] logx / x + â .... [ degree ] [ logx / x .... + n - cx or hp ] [ A] cc , + logx / osc .... xn cv angle , or cx + rot + transl. + Accel .

= + [ + - * 0 logx / x n ... R , 0 , -R ] + [ logx / x n ... llam [ + R , 0 , -R ] =
EXCHANGE WITH EXPONTE transcendental .
And that parties follow an oscillatory motion of the cc cx in relation to distance and time. And that marks the intensity io waves, and the variable oscillation ov relative distance and time .
= Ccx , cxx + Llam logx / x n ... [ * R , 0 -R [ A] logx / x + â .... [ degree ] [ logx / x .... + n - cx or hp ] [ A] cc , + logx / osc .... xn cv angle , or cx + rot + transl. + Accel + cc , cx + osc i / d / t + ov / d / t + log ov / n ov ...
Oscillation intensity and degrees .
Dimensional area - latitude , longitude , height , convex concave , oscillating degrees / time.
Rotation , continuous and discontinuous parts .
+ Oscillation degree [ concave or convex ] / time [ + osc degree conc . Conv . / t ] .
Part of spheres , cones parties , etc. . Parties with . Chat osc * G / t .
We have thus a system Graceli integral , differential, and sequential forming complex shapes, and figures and variables in oscillatory movements .
Example : this way you can build with concave face as part of the lips and nostrils , and even as a convex nose and eyes .
And if you can build figures oscillation of concave and convex parts .
Ie , for this system we have the geometry Graceli oscillatory and oscillatory integral calculus Graceli .
What can be done by integrating parts of areas , and can be done by integrating concave and convex lines or waves .
The oscillatory Graceli calculation can also be used in quantum flows , and jumps of electrons , and radiation , as well as the fluctuations of gas and electrons when high temperatures .
Calculus and Geometry Graceli integral and derivative multitransformativa Graceli .
For points derivatives builds alternating concave and convex areas , which has the beginning of longitude and latitude at each point derivative. And being that is in relation to distance from the longitude and latitude .
And since each well may or may not be in the form of oscillatory waves.
= Llam = fy + + A [ cc cx ] [ + - * 0 logx / x ... n ] , and since the scope and degree angle of each well varies over time , and can follow Graceli variable logx / x n ...
= Llam = fy + + [ A = cc , cx ] [ + - * 0 logx / x ... n ] =
For each point has fx extension [ + - * 0 logx / x n ... R , 0 , -R , and llam + A = cc , cx + + osc rta x / t / c / t ]
SO , WE : the geometry Graceli multitransformativa through integral calculus and derivative Graceli .

= favor . [ + - * 0 logx / x n ... R , 0 , -R , + [ + - * 0 logx / x n ... llam ] + [ + - * 0 logx / x A = n ... cc , cx ] + [ + - * 0 logx / x n ... x rta + osc / t / c / t ] + [ logx / x n ... osc cc waves cx , cx cc ] + [ r osc / t ] =
r = rotation.
example :
Imagine several flags attached a rope where the rope balance in the form of waves , flat form and where each flag passes for the three-dimensional and four-dimensional shape , and concave to convex to concave and convex .
That is, for each flag have attached at one point or points of the rope with oscillating shapes that vary over time with portions of the convex concave , convex and concave .
= Favor points have x n flags ... [ + - * 0 logx / x n ... R , 0 , -R , + [ + - * 0 logx / x n ... llam ] + [ + - * 0 logx / x n ... A = cc , cx ] + [ + - * 0 logx / x n ... x rta + osc / t / c / t ] + [ logx / x n osc waves ... cc cx , cx cc ] + [ osc r / t ] =
[ [ A] = cc , cx alternating convex and concave .
Ie , for each point or interconnection have banner with different and varied forms .
Thus , we varied points with varied shapes the curls and curves infinitesimal .
Relative geometry and calculus on Graceli .
Geometry Graceli multiplicity.
Continuous , discontinuous and variable oscillating , flat and curved at the same time.
= Favor points have x n flags ... [ + - * 0 logx / x n ... R , 0 , -R , + [ + - * 0 logx / x n ... llam ] + [ + - * 0 logx / x n ... A = cc , cx ] + [ + - * 0 logx / x n ... x rta + osc / t / c / t ] + [ logx / x n osc waves ... cc cx , cx cc ] + [ osc r / t ] =
Ie we have a geometry by the strings , discontinuous by the flags , and the oscillatory movements . And flat and curved and discontinuous .
Geometry transcendental Graceli .
Geometry System jumping from one position and time, and form to another without passing through a position , time and intermediate form . This happens when you multiply or divide by 0 [ zero ] .
= [ + - * 0 logx / x n ... of [ [ A] * R , 0 , -R ] + [ + - * 0 logx / x n ... llam ] =
Example : a flag is flat [ two-dimensional ] with the wind also becomes three-dimensional [ with curved waves ] , and the movement of these waves becomes four-dimensional .
Physical transcendental Graceli .
Develop other formulas regarding the formula of relativity , quantum waves , waves Schori . Waves and Gaussian curves .
Relativity and quantum transcendental .
Holes galactic transcendent . That produces phenomena in space and time and radioactive intensity and disappears and reappears in another space -time , shape, intensity and position and physical, dynamic, rotational and translational time.
= [ + - * 0 logx / x n ... R , 0 , -R ] + [ + - * 0 logx / x n ... llam ] =
COSMIC TRANSCENDENTAL .
= [ + - * 0 logx / x n ... of [ [ A] * R , 0 , -R ] + [ logx / x n ... llam [ [ A] + R * , 0 , -R ] =
EXCHANGE WITH EXPONTE transcendental .
Pure mathematics Graceli [ mpg ] .
Author : Luiz Ancelmo Graceli .
Numbers brothers Graceli [ NGI ] .
Are numbers that produce the same results as sequential numbers.
Numbers that are produced from 1 and 3.
These logs are the primary numbers = [ 1 and 3] .
And they produce secondary .
They are.
1, 3 , 101, 103, 1003, 10003 , 1001, 303 , 333, 111 , 11, and others.
And that will produce similar results repeated or progressive numbers .
Numbers multiple Graceli corresponding infinitesimal . Ngmci .
Are numbers that multiply by another and that will produce the same corresponding numbers .
Example .
0.11111111111111111
0.333333333333333333
1.011111111111111
1.03333333333333
1.010101010101010
1.01010101010100
Where will produce multiple numbers corresponding infinitesimal .
0.1111111111111 * 9 = 0.9999999999999999
* 9 = o.3333333333333
Numbers divisible GRACELI corresponding infinitesimal [ NGCDI ] .
The NGCDI are sequential numbers that produce corresponding infinitesimal .
Where we also have the corresponding infinitesimal sequences .
Example .
81/9 = has a result .1111111111111111111111
Where all numbers that reach this result match. And the result is also relevant .
Numbers similar Graceli [ NGS ] .
Numbers that are multiplied by others, they will produce the same sequential results .
Ngs * = R seq = sequences similar Graceli .
0.5 / 9 =
And the numbers Graceli sequential infinitesimal [ NGSI ] divide the repeated and progressive .
5/25 = n ....
Mathematical elements Graceli .
[ mpg ] + [ logx / x ... n ] + [ rta + osc / t ] + [ logx / x n ... [ * / ] - A = 0, R , + R ] =
[ mpg ] = elements of pure mathematics Graceli .
[ Logx / x .... n ] = infinitesimal division of the logarithm of x by x itself .
[ rta + osc / t ] rotation, translation , acceleration and oscillation divided by time.
[A - = 0, R , + R ] = system alternancidade multiplying by negative , positive and zero real numbers . Giving a system of alternation and at times disappear when multiplied by zero.
See calculation for n- dimensions of coordinates.
And for the mathematical elements Graceli .
Transfísica Graceli .
Transcendent physical Graceli .
Where the phenomena change or give instantaneous jumps and or disappear and reappear in another time and place .
And it follows the formula and transcendent Graceli alternancidade .
[ logx / x n ... [ * / ] - A = 0, R , + R ] =
This is confirmed on the heels of electrons , radiation phenomena in the fields of stocks , loads , the atmospheres , the elements that form rings and belts in the stars and galaxies , the thermal radiation when we see the radiation in the deserts with stronger more intense radiation in an intermediate space after radiation with no visibility .
Physics transcendental state .
And the transcendental quantum state . And invisibilismo . And hibernalismo .
As power conditions , temperature fields , and rotational movements and acelerativos have transcendental physical and quantum states .
Ie change of state and condition of matter , energy [ as magnetic for electricity , and chemical condition as isotopes for deuterons , and others, or even decay of uranium to thorium .
Ie we have physics, chemistry and math transcendental states . That change according to conditions of energy.
This we have in the thermal radiation , very close to where temperatures have a major effect, a lower intermediate distance , and more up to another higher intensity.
This relativism have a transcendentalism , and a quantum , invisibilismo physical , chemical and transcendental .
This also happens in quantum radiation , and interactions of charges and quantum particles inside , and that these transcendent states change according to the action of external agents , even its own nature.