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It is the property of operations such as addition or multiplication which state that the order in which the operations are carried out does not affect the result. That is, (A + B) + C = A + (B + C) and so, without ambiguity, you can write these as A + B + C.
a then b then c
(a + b) + c = a + (b + c) so that either can be written as a + b + c That is, the order in which these operations are carried out does not matter.
The associative property states that, for the sum of three or more integers the order in which the summation in carried out does not make a difference to the answer. Thus, for any three integers, A, B and C: (A + B) + C = A + (B + C) and so, without ambiguity, we can write either as A + B + C. Note that A + B need not be the same as B + A. The order of the integers DOES matter. It is the order of the summing that does not.
In cyclical order. For example, if the sides of a hexagon are in three similar parts: a,a,b,b,c and c then rotational symmetry requires them to be in the order a-b-c-a-b-c (or similar). The angles also need to follow the same pattern.
It is the property of operations such as addition or multiplication which state that the order in which the operations are carried out does not affect the result. That is, (A + B) + C = A + (B + C) and so, without ambiguity, you can write these as A + B + C.
a then b then c
A They were appointed by the governor of their state. B They were appointed by their state legislatures. C They were elected by the House of Repersentatives. D They were elected by the people. The corect answer is B
b/c it was the main section of the city-state. b/c it was the main section of the city-state.
(Mass) State, like solid, liquid, or gas. Color, size, or density.
(a + b) + c = a + (b + c) so that either can be written as a + b + c That is, the order in which these operations are carried out does not matter.
you can put ANYTHING in A B C order, so the answer is yes
The associative property states that, for the sum of three or more integers the order in which the summation in carried out does not make a difference to the answer. Thus, for any three integers, A, B and C: (A + B) + C = A + (B + C) and so, without ambiguity, we can write either as A + B + C. Note that A + B need not be the same as B + A. The order of the integers DOES matter. It is the order of the summing that does not.
When elements are grouped without change of order, as: (a+b)+c=a+(b+c)
You [C] order from a supplier [B] but the goods are notsent from them but their supplier [A] -so goods sent from A to C directlyrather than from A to B then B to C
A, B, then C
In cyclical order. For example, if the sides of a hexagon are in three similar parts: a,a,b,b,c and c then rotational symmetry requires them to be in the order a-b-c-a-b-c (or similar). The angles also need to follow the same pattern.