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Yes, complex numbers obey the commutative property of addition.

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0The commutative property of addition applies to all real and complex numbers. It has nothing whatsoever to do with the form in which the number is represented: decimal, binary, etc.

Yes. The commutative property of addition (as well as the commutative property of multiplication) applies to all real numbers, and even to complex numbers. As an example (for integers): 5 + (-3) = (-3) + 5

All real numbers are commutative under addition and multiplication.

Yes. Both the commutative property of addition, and the commutative property of multiplication, works:* For integers * For rational numbers (i.e., fractions) * For any real numbers * For complex numbers

Real numbers are commutative (if that is what the question means) under addition. Subtraction is a binary operation defined so that it is not commutative.

The Abelian or commutative property of addition of integers, rationals, reals or complex numbers.

It is the commutative property of addition.

Addition and multiplication: yes

it is the commutative property of addition

The commutative property states that given any two numbers, x and y,x + y = y + xThe property applies to all real numbers and complex numbers as well.2.3 + 4.5 = 6.8 = 4.5 + 2.3

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.

The result is called the sum of the two numbers. The operation of addition is commutative. This means that the addition of two numbers will give the same sum regardless of the order in which the numbers are added.

That is the commutative property of either multiplication or addition.

It is the commutative property of addition.

The complex numbers are a field.

The commutative property of addition and the commutative property of multiplication.

It works for some operations, for others it doesn't. Specifically, both addition and multiplication of real numbers are commutative.

The commutative property for any two numbers, X and Y, is X # Y = Y # X where # can stand for addition or multiplication. Whether the numbers are written as integers, rational fractions, irrationals or decimal numbers is totally irrelevant.

the greatest factor that two or more numbers have in common.

It is the commutative property of addition of real numbers.

Matrix addition is commutative if the elements in the matrices are themselves commutative.Matrix multiplication is not commutative.

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.

For the set of real numbers, R, a binary operation is a function from R X R into R, where R X R is the x-y plane. A binary operation is commutative if the value returned by the operation is the same regardless of the order of the operands. For real numbers the two most basic commutative binary operations are addition and multiplication and they can be expressed in the following way:If a and b are any two real numbers then a + b = b + a (addition is commutative) and ab = ba ( multiplication is commutative).

The commutative property of addition can be stated as: a+b = b+a

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