8/1 is one of an infinite number of possible answers.
An equivalent expression for (5x^8 - 10) can be factored as (5(x^8 - 2)). This shows that the expression can be simplified by factoring out the common term (5).
8/9 = 0.888888(repeating)
The expression 8(11 - m) can be rewritten by distributing the 8, resulting in 88 - 8m. Therefore, an equivalent expression is 88 - 8m.
The expression ( (24a + 56b) ) can be factored by finding the greatest common factor (GCF) of the coefficients. The GCF of 24 and 56 is 8, so the equivalent expression can be factored as ( 8(3a + 7b) ).
The expression equivalent to (19 \times 8) can be rewritten using the distributive property. For example, it can be expressed as ((20 - 1) \times 8), which simplifies to (20 \times 8 - 1 \times 8), resulting in (160 - 8 = 152). Thus, (19 \times 8) is equivalent to (152).
The expression 9+5 is equivalent.
An equivalent expression for (5x^8 - 10) can be factored as (5(x^8 - 2)). This shows that the expression can be simplified by factoring out the common term (5).
8/9 = 0.888888(repeating)
69 is an equivalent expression.
10
The expression 8(11 - m) can be rewritten by distributing the 8, resulting in 88 - 8m. Therefore, an equivalent expression is 88 - 8m.
(x-8)(x+8)
The expression ( (24a + 56b) ) can be factored by finding the greatest common factor (GCF) of the coefficients. The GCF of 24 and 56 is 8, so the equivalent expression can be factored as ( 8(3a + 7b) ).
There is no variable in (8x12)+8, so it would be called an arithmetic expression. It would evaluate to 96+8 = 104.
16
The expression equivalent to (19 \times 8) can be rewritten using the distributive property. For example, it can be expressed as ((20 - 1) \times 8), which simplifies to (20 \times 8 - 1 \times 8), resulting in (160 - 8 = 152). Thus, (19 \times 8) is equivalent to (152).
It is: 9*(8+1) = 81