Welcome to Anagrammer Crossword Genius! Keep reading below to see if ordie is an answer to any crossword puzzle or word game (Scrabble, Words With Friends etc). Scroll down to see all the info we have compiled on ordie.
ordie
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The answer ORDIE has 32 possible clue(s) in existing crosswords.
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The word ORDIE is NOT valid in any word game. (Sorry, you cannot play ORDIE in Scrabble, Words With Friends etc)
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Definitions of ordie in various dictionaries:
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Possible Crossword Clues |
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Do-___ |
'Live free ___' (New Hampshire motto) |
'Live Free ___' (state motto) |
Do-__: desperate |
"Live Free __": New Hampshire motto |
Do ___ situation |
Ordie might refer to |
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In set theory, an ordinal number, or ordinal, is one generalization of the concept of a natural number that is used to describe a way to arrange a collection of objects in order, one after another. Any finite collection of objects can be put in order just by the process of counting: labeling the objects with distinct natural numbers. Ordinal numbers are thus the "labels" needed to arrange collections of objects in order. * An ordinal number is used to describe the order type of a well ordered set (though this does not work for a well ordered proper class). A well ordered set is a set with a relation > such that* (Trichotomy) For any elements x and y, exactly one of these statements is true * x > y * y = x * y > x * (Transitivity) For any elements x, y, z, if x > y and y > z, then x > z * (Well-foundedness) Every nonempty subset has a least element, that is, it has an element x such that there is no other element y in the subset where x > yTwo well ordered sets have the same order type if and only if there is a bijection from one set to the other that converts the relation in the first set to the relation in the second set. * Whereas ordinals are useful for ordering the objects in a collection, they are distinct from cardinal numbers, which are useful for saying how many objects are in a collection. Although the distinction between ordinals and cardinals is not always apparent in finite sets (one can go from one to the other just by counting labels), different infinite ordinals can describe the same cardinal. Like other kinds of numbers, ordinals can be added, multiplied, and exponentiated, although the addition and multiplication are not commutative. * Ordinals were introduced by Georg Cantor in 1883 to accommodate infinite sequences and to classify derived sets, which he had previously introduced in 1872 while studying the uniqueness of trigonometric series. |
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