limit aleph - ορισμός. Τι είναι το limit aleph
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Τι (ποιος) είναι limit aleph - ορισμός

SEQUENCE OF NUMBERS USED TO REPRESENT THE CARDINALITY (OR SIZE) OF INFINITE SETS THAT CAN BE WELL-ORDERED
Aleph-null; Aleph-naught; Aleph-one; Aleph zero; Aleph 0; Aleph null; Aleph one; Aleph 1; Aleph-nought; Aleph One; Aleph-0; Aleph-Null; Aleph-Zero; Aleph-zero; Aleph-1; Aleph nought; AlephOne; Aleph function; Aleph naught; Aleph Null; Aleph notation; ℵ₀; ℵ₁; Aleph numbers; Alpeh-omega; א0; ℵ0; ℵ1
  • Aleph-nought, aleph-zero, or aleph-null, the smallest infinite cardinal number

Aleph         
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FIRST LETTER OF MANY SEMITIC ALPHABETS
א; ﺍ; ﺎ; ا; אַ; אָ; אּ; ʼalif; ʾalp; Aleph (Hebrew); ʾalif; ܐ; Alaph; ʼalp; Aleph (letter); Egyptian aleph; Broken alif; Alif maqsura; `alif; `alp; 'alp; 'alif; Ālaph; Egyptological Aleph; ࠀ; 𐤀; 𐡀; ى; Alef maksura; Alif (letter); 'Alif; Alif maqṣūra; Ꜣ; ﻯ; ﻰ; ﯨ; ﯩ; ݳ; ݴ; Alif maddah; Alif madda; 'alif maddah; Alef; Egyptian alef; Alef (letter); Ālep; Alaphs; Egyptological alef; Egyptological aleph; اَ; ـا; ﬡ; Alif maqsuura; Alif maksoorah; ـى; ʾalif layyina; Alif layyinah; 'alif layyina
<text, language> ["Aleph: A language for typesetting", Luigi Semenzato <luigi@cs.berkeley.edu> and Edward Wang <edward@cs.berkeley.edu> in Proceedings of Electronic Publishing, 1992 Ed. Vanoirbeek & Coray Cambridge University Press 1992]. (1994-12-15)
ALEF         
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FIRST LETTER OF MANY SEMITIC ALPHABETS
א; ﺍ; ﺎ; ا; אַ; אָ; אּ; ʼalif; ʾalp; Aleph (Hebrew); ʾalif; ܐ; Alaph; ʼalp; Aleph (letter); Egyptian aleph; Broken alif; Alif maqsura; `alif; `alp; 'alp; 'alif; Ālaph; Egyptological Aleph; ࠀ; 𐤀; 𐡀; ى; Alef maksura; Alif (letter); 'Alif; Alif maqṣūra; Ꜣ; ﻯ; ﻰ; ﯨ; ﯩ; ݳ; ݴ; Alif maddah; Alif madda; 'alif maddah; Alef; Egyptian alef; Alef (letter); Ālep; Alaphs; Egyptological alef; Egyptological aleph; اَ; ـا; ﬡ; Alif maqsuura; Alif maksoorah; ـى; ʾalif layyina; Alif layyinah; 'alif layyina
<language> A programming language from Bell Labs. ALEF boasts few new ideas but is instead a careful synthesis of ideas from other languages. The result is a practical general purpose programming language which was once displacing C as their main implementation language. Both shared variables and message passing are supported through language constructs. A window system, user interface, operating system network code, news reader, mailer and variety of other tools in Plan 9 are now implemented using ALEF. (1997-02-13)
aleph         
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FIRST LETTER OF MANY SEMITIC ALPHABETS
א; ﺍ; ﺎ; ا; אַ; אָ; אּ; ʼalif; ʾalp; Aleph (Hebrew); ʾalif; ܐ; Alaph; ʼalp; Aleph (letter); Egyptian aleph; Broken alif; Alif maqsura; `alif; `alp; 'alp; 'alif; Ālaph; Egyptological Aleph; ࠀ; 𐤀; 𐡀; ى; Alef maksura; Alif (letter); 'Alif; Alif maqṣūra; Ꜣ; ﻯ; ﻰ; ﯨ; ﯩ; ݳ; ݴ; Alif maddah; Alif madda; 'alif maddah; Alef; Egyptian alef; Alef (letter); Ālep; Alaphs; Egyptological alef; Egyptological aleph; اَ; ـا; ﬡ; Alif maqsuura; Alif maksoorah; ـى; ʾalif layyina; Alif layyinah; 'alif layyina
['?:l?f]
¦ noun the first letter of the Hebrew alphabet.
Origin
ME: from Heb. 'alep?, lit. 'ox' (the character in Phoenician and ancient Heb. possibly being derived from a hieroglyph of an ox's head).

Βικιπαίδεια

Aleph number

In mathematics, particularly in set theory, the aleph numbers are a sequence of numbers used to represent the cardinality (or size) of infinite sets that can be well-ordered. They were introduced by the mathematician Georg Cantor and are named after the symbol he used to denote them, the Semitic letter aleph ( {\displaystyle \,\aleph \,} ).

The cardinality of the natural numbers is 0 {\displaystyle \,\aleph _{0}\,} (read aleph-nought or aleph-zero; the term aleph-null is also sometimes used), the next larger cardinality of a well-orderable set is aleph-one 1 , {\displaystyle \,\aleph _{1}\;,} then 2 {\displaystyle \,\aleph _{2}\,} and so on. Continuing in this manner, it is possible to define a cardinal number α {\displaystyle \,\aleph _{\alpha }\,} for every ordinal number α , {\displaystyle \,\alpha \;,} as described below.

The concept and notation are due to Georg Cantor, who defined the notion of cardinality and realized that infinite sets can have different cardinalities.

The aleph numbers differ from the infinity ( {\displaystyle \,\infty \,} ) commonly found in algebra and calculus, in that the alephs measure the sizes of sets, while infinity is commonly defined either as an extreme limit of the real number line (applied to a function or sequence that "diverges to infinity" or "increases without bound"), or as an extreme point of the extended real number line.