The transcendental Pi: Discussion about.
Of ferman: Fernando Mancebo Rodriguez--- Personal page. ----Spanish pages
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COSMIC and ATOMIC MODEL ||| Video: Cosmic and atomic model
Double slit and camera obscura experiments: ferman experiment ||| Type of Waves: Questions of Quantum Mechanics
The socurces of gravity. ||| In favour of the cosmos theory of ferman FCM ||| Theory of Everything: summary
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Chart of atomic measures||| The main foundations of the Cosmos' Structure ||| Unstable particles in accelerators
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Inexactness principle in observations ||| Einstein and the gravity ||| The Universal Motion ||| Atomic particles
Cosmic Geometry ||| Bipolar electronic: semiconductors ||| Multiverse or multi-worlds||| Light and photons
Quantum explanation of Gravity ||| Real physics versus virtual physics ||| The window experiment
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Few points about Cosmic Structuring.||| What is Time||| Simultaneity ||| The Cosmic tree ||| The Cosmic entropy
Interesting and short life of neutrons ||| Leptons field ||| Macro Microcosm, the same thing.
Fourth dimension of space.||| The way to get a unity theory||| UHECR Ultra-high-energy-cosmic-rays
Magnetic or entropy forces: types or classes||| Time observation and time emission ||| The universe expansion
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Direct formula for Pi: The Squaring Pi. ||| The pyramids of Squaring Pi. ||| Functions of Pi ||| Integration formulas Pi.
Squaring the Circle ||| Cocktail formula for Squaring Pi.||| Orbital coordinates in motion: Summary
Oscillating function: Cartesian oscillators ||| The ciclo as unit of angular speed ||| Squaring circles ruler and compass |||
Video: Squaring circles ruler and compass ||| The number Phi and the circumference.speed |||
The The extended Pi ||| Angles trisection||| Squaring the Circle regarding Phi||| Video of the two squares method
Discusion about the Pi as transcendental number|||: Not transcendental Pi||| The chained sets|||
Properties of equalities in limits||| The Phi right triangles ||| Pi and the Circumscription Theorem
Pi triangle by squaring the circle : Vedeo Pi triangle ||| Squaring Pi demonstration by circumscription Theorem LatexPdf
Doubling the cube ||| Framing the circle ||| Phi and Pi: relation formula
Squaring circle with Phi (to 0.000005 of ideal ruler and compass)||| Sbits: Static and dinamic orbital coordinates
Squaring Pi and the Floating Point
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Ubiquity Principle of set.||| Positive electric charges reside in orbits.
Chaos Fecundity. Symbiosis: from the Chaos to the Evolution.||| Speed-Chords in galaxies.
The ancient planets Asteron and Poseidon.||| The man and the testosterone.||| Toros say ||| The essence of life
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Creation: Highlights||| First steps in metaphysics ||| A personal experience
Reason for the Cosmos' creation ||| The essence of life ||| Cosmic Entity: Metaphysics and Physics parameters
A small discussion about the transcendental Pi
In my opinion mathematics is much more than numbers, it is itself the natural and universal language with which you can explain (by measuring) all the events and questions that exist and arise in nature.
And it is so universal that it is valid both on our planet and if we move to any other outside world.
But it also contains and it is built and based on intelligence, logic and philosophy.
Perhaps much more: We could attribute mathematics of being the mother and basis of logic.
Now well, I understand that all these qualities that mathematics possesses go against considering the Pi number as transcendental.
Every regular geometric figure is constructed and measured by its own construction parameters.
Triangle: Base by height, divided by two.
Square: Side squared.
Polygon: Perimeter per apothem divided by two.
Etc., That is, all the geometric figures.
If we try to measure any geometric figure with approximation series, we already know beforehand that we have no chance of arriving at a good and logical solution.
And of course, it must also happen with the circumference and Pi.
But let's see, what is a transcendental number or value?
Well, it is a value not subject to a direct connection or formula to obtain it, but goes beyond any attempt to capture it in an exact and well-defined way.
In other words, it is the indefinite search for a value that we will never achieve.
And my question and consideration when I observe the circumference is simple: I am observing the simplest and easy geometrical figure of all, and its construction only depends on its radius or diameter.
Then to think that the builder (radius) cannot measure what he is building is unacceptable and somewhat ridiculous.
To think that the simplest figure that we have in our sight, is impossible to capture with a direct formula and that its dimension is transcendental (similar to: beyond reality and geometric consistency) lacks logic.
Therefore my conclusion is that the number Pi, (half circumference of radius 1) can't be transcendental.
But even more: No parameter of any regular geometric figure can be transcendental, but measurable with complete accuracy.
Then the question is: Why we use series to find Pi?
Off course, because we don't know to make it in other way
But, we don't have to lie us: With series we never reach the total accuracy.
Another conclusion that I have reached is that:
Transcendental numbers or values are mathematical inventions of humans, and do not exist in nature.
Every natural element, including the Pi, or semi-circumference of r = 1, has a beginning and an end and not an infinite limit.