quinta-feira, 13 de agosto de 2015


the seven most beautiful functions graceli.





Algebraic paradox - Geometric graceli.
1. The difference between the sum of the cube and the square of the legs in relation to the cube or square of the hypotenuse progressively increases as the size of the sides of the legs and also increases or square to cube on cube.
2- In a sequential divisive process graceli this difference will always bring sequential infinitesimal numbers.


3. The sum of the cube of the legs always have a hypotenuse of irrational number, transcendental, infinitesimal.
4. When the sum of the squares of the legs is a prime number the hypotenuse is a transcendent irrational number. Ie the sum of the squares of the legs will never be equal to the square of the hypotenuse.
5- Most often the hypotenuse to the hub in relation to the sum of the cube of the legs will be a prime number.
6- In an equilateral triangle the sum of the squares of the legs will never be equal to the square of the hypotenuse.

7 In other words, what we have is an algebraic rather than geometric theory.




Geometry and dynamic oscillatory variations.

With two waves that propagate next to one another.

A crossing each other.

1- It can be two oscillatory waves with concave and convex movements and differentials. And indeterminate and alternate oscillatory flows.

2- Or even type spiral type movements that form the genetic code.

3- Or even the dog graceli Paradox [where it forms curved differential movements in all directions].
R [+, -, *, /] pr / pPr [n] * [i].
R [+, -, *, /] pr / pPr [n] * [i], MCC, mcx, mccdd, mcxdd, + [Fo].
Ray, progression, nth, imaginary numbers, concave and convex movement, dynamic and differential, and oscillatory flows.

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