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commutative

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The answer COMMUTATIVE has 0 possible clue(s) in existing crosswords.

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The word COMMUTATIVE is VALID in some board games. Check COMMUTATIVE in word games in Scrabble, Words With Friends, see scores, anagrams etc.

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Definitions of commutative in various dictionaries:

adj - (of a binary operation) independent of order

Relating to, involving, or characterized by substitution, interchange, or exchange.

Independent of order.

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Possible Jeopardy Clues
The fact that 9 plus 3 is equal to 3 plus 9 demonstrates this property, from the Latin for "exchange"
Possible Dictionary Clues
of a binary operation independent of order
Relating to, involving, or characterized by substitution, interchange, or exchange.
Independent of order. Used of a logical or mathematical operation that combines objects or sets of objects two at a time. If a b b a, the operation indicated by is commutative.
Involving the condition that a group of quantities connected by operators gives the same result whatever the order of the quantities involved, e.g. a b b a.
Relating to or involving substitution or exchange.
(of a calculation) giving the same result whatever order the values are in
of a calculation, giving the same result whatever order the values are in
Commutative might refer to
In mathematics, a binary operation is commutative if changing the order of the operands does not change the result. It is a fundamental property of many binary operations, and many mathematical proofs depend on it. Most familiar as the name of the property that says "3 + 4 = 4 + 3" or "2 × 5 = 5 × 2", the property can also be used in more advanced settings. The name is needed because there are operations, such as division and subtraction, that do not have it (for example, "3 − 5 ≠ 5 − 3"); such operations are not commutative, and so are referred to as noncommutative operations. The idea that simple operations such as the multiplication and addition of numbers are commutative, was for many years implicitly assumed. Thus, this property was not named until the 19th century, when mathematics started to become formalized. A corresponding property exists for binary relations; a binary relation is said to be symmetric if the relation applies regardless of the order of its operands; for example, equality is symmetric as two equal mathematical objects are equal regardless of their order.
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