axiom of continuity - translation to ρωσικά
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axiom of continuity - translation to ρωσικά

THE ABSENCE OF INFINITESIMALS IN A MATHEMATICAL SYSTEM
Archimedean field; Archimedean axiom; Archimedes axiom; Axiom of Archimedes; Non-archimedean field; Archimedian Principle; Axiom of continuity; Axiom of archimedes; Archimedean ring; Archimedean semi-group; Archimedean semigroup; Theorem of Eudoxus; Non-Archimedean field; Continuity axiom; Nonarchimedean field; Archimedes property; Nonarchimedean ordered field; Archimedean ordered field; Eudoxus' axiom; Eudoxus axiom; Archimedes' theorem
  • Illustration of the Archimedean property.

axiom of continuity         

математика

аксиома непрерывности

comprehension axiom         
AXIOM SCHEMA
Axiom of specification; Axiom of separation; Axiom schema of separation; Axiom schema of comprehension; Axiom of comprehension; Unrestricted comprehension; Axiom of abstraction; Axiom of subsets; Axioms of subsets; Subset axiom; Axiom schema of restricted comprehension; Comprehension axiom; Aussonderungsaxiom; Axiom schema of unrestricted comprehension; Unrestricted comprehension principle

математика

аксиома выделения

axiom of foundation         
AXIOM STATING THAT ALL SETS ARE WELL-FOUNDED
Axiom of foundation; Axiom of Fundierung; Foundation axiom; Regularity axiom; Axiom of Foundation; Axiom of well foundation; Axiom of Regularity; Well founded set; Axiom of fundierung

математика

аксиома фундирования

Ορισμός

грип
ГРИП, ГРИПП, гриппа, ·муж. (·франц. grippe) (мед.). Инфекционная болезнь - катарральное воспаление дыхательных путей, сопровождаемое лихорадочным состоянием; то же, что инфлуэнца
.

Βικιπαίδεια

Archimedean property

In abstract algebra and analysis, the Archimedean property, named after the ancient Greek mathematician Archimedes of Syracuse, is a property held by some algebraic structures, such as ordered or normed groups, and fields. The property, typically construed, states that given two positive numbers x {\displaystyle x} and y {\displaystyle y} , there is an integer n {\displaystyle n} such that n x > y {\displaystyle nx>y} . It also means that the set of natural numbers is not bounded above. Roughly speaking, it is the property of having no infinitely large or infinitely small elements. It was Otto Stolz who gave the axiom of Archimedes its name because it appears as Axiom V of Archimedes’ On the Sphere and Cylinder.

The notion arose from the theory of magnitudes of Ancient Greece; it still plays an important role in modern mathematics such as David Hilbert's axioms for geometry, and the theories of ordered groups, ordered fields, and local fields.

An algebraic structure in which any two non-zero elements are comparable, in the sense that neither of them is infinitesimal with respect to the other, is said to be Archimedean. A structure which has a pair of non-zero elements, one of which is infinitesimal with respect to the other, is said to be non-Archimedean. For example, a linearly ordered group that is Archimedean is an Archimedean group.

This can be made precise in various contexts with slightly different formulations. For example, in the context of ordered fields, one has the axiom of Archimedes which formulates this property, where the field of real numbers is Archimedean, but that of rational functions in real coefficients is not.

Μετάφραση του &#39axiom of continuity&#39 σε Ρωσικά