Synthetical - meaning and definition. What is Synthetical
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What (who) is Synthetical - definition

STUDY OF GEOMETRY WITHOUT THE USE OF COORDINATES OR FORMULAS.
Synthetical geometry; Computational synthetic geometry; Pure geometry; Synthetic proof

Synthetical      
·adj Artificial. ·cf. Synthesis, 2.
II. Synthetical ·adj Of or pertaining to synthesis; consisting in synthesis or composition; as, the synthetic method of reasoning, as opposed to analytical.
III. Synthetical ·adj Comprising within itself structural or other characters which are usually found only in two or more diverse groups;
- said of species, genera, and higher groups. ·see the Note under Comprehensive, 3.
Synthetic geometry         
Synthetic geometry (sometimes referred to as axiomatic geometry or even pure geometry) is the study of geometry without the use of coordinates or formulae. It relies on the axiomatic method and the tools directly related to them, that is, compass and straightedge, to draw conclusions and solve problems.
Capillary action through synthetic mesh         
User:Spargon/Capillary Action through Synthetic Mesh; Capillary Action through Synthetical Mesh
Capillary action through synthetic mesh is the result of the intermolecular attraction between moisture and semi-synthetic polymers, causing a current of thermionic energy through a specific pathway within a mesh material. The combination of the adhesive forces and the surface tension that arises from cohesion produces the characteristic upward curve in a fluid, such as water.

Wikipedia

Synthetic geometry

Synthetic geometry (sometimes referred to as axiomatic geometry or even pure geometry) is geometry without the use of coordinates. It relies on the axiomatic method for proving all results from a few basic properties initially called postulate, and presently called axioms.

The term "synthetic geometry" has been coined only after the 17th century, and the introduction by René Descartes of the coordinate method, which was called analytic geometry. So the term "synthetic geometry" was introduced to refer to the older methods that were, before Descartes, the only known ones.

According to Felix Klein

Synthetic geometry is that which studies figures as such, without recourse to formulae, whereas analytic geometry consistently makes use of such formulae as can be written down after the adoption of an appropriate system of coordinates.

The first systematic approach for synthetic geometry is Euclid's Elements. However, it appeared at the end of the 19th that Euclid's postulates were not sufficient for characterizing geometry. The first complete axiom system for geometry was given only at the end of the 19th century by David Hilbert. At the same time, it appeared that both synthetic methods and analytic methods can be used to built geometry. The fact that the two approches are equivalent has been proved by Emil Artin in his book Geometric Algebra.

Because of this equivalence, the distinction between synthetic and analytic geometry is no more in use, except at elementary level, or for geometries that are not related to any sort of numbers, such as some finite geometries and non-Desarguesian geometry.