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An operation (such as addition or multiplication) is said to be commutative over a set of members of a set (numbers) if for all operands, the answer is not altered by the order in which they appear.

Basically, for addition, that means 2 + 3 = 3 + 2 = 5

Subtraction is NOT commutative since 2 - 3 = -1 while 3 - 2 = 1, which is not the same.

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Q: Definition and example of the commutative property?
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What is the definition of the commutative property of multiplication?

According to the commutative of multiplication, a*b = b*a.


What is the definition of the Commutative Property of Subtraction?

There cannot be a definition because it does not exist!


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The commutative property of addition says that it does not matter in which order you add the numbers, you will get the same result. For example, 5 + 3 = 8 and 3 + 5 = 8.


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the numbers could be switched and the answer will stay the same


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Commutative property is taking a question and flipping its factors and getting the same answer. Example: 7+(5+9)=21=(5+7)+9=21 Commutative Property of Addition


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Changing the order of addends does not change their sum. In symbolic form, a + b =b + a. Subtraction is not commutative .


Give an example of the commutative property of multiplication?

4x8=8x4


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Assuming you mean definition, commutative is a property of an operation such that the order of the operands does not affect the result. Thus for addition, A + B = B + A. Multiplication of numbers is also commutative but multiplication of matrices is not. Subtraction and division are not commutative.


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