If it doesn't have an equal sign, then it's an expression, not an equation. The expression 7x2x is quadratic, because it equals 14x², and something is quadratic if it contains the squared exponent ².
27 + 27 = 54
27 triangles.27 triangles.27 triangles.27 triangles.
20% off of 27:= 20% discount applied to 27= 27 - (20% x 27)= 27 - (0.20 x 27)= 27 - 5.4= 21.6
36 as a % of 27 = 100*36/27 = 133.33... %36 as a % of 27 = 100*36/27 = 133.33... %36 as a % of 27 = 100*36/27 = 133.33... %36 as a % of 27 = 100*36/27 = 133.33... %
If it doesn't have an equal sign, then it's an expression, not an equation. The expression 7x2x is quadratic, because it equals 14x², and something is quadratic if it contains the squared exponent ².
5x+2x=7x2x + 5x = 7x
(27*27*27*27) = 27⁴ = 531,441
27 x 27 x 27 = 27³ = 19,683
No -27 can not go into 27.
27 + 27 = 54
27 triangles.27 triangles.27 triangles.27 triangles.
7+19
27
20% off of 27:= 20% discount applied to 27= 27 - (20% x 27)= 27 - (0.20 x 27)= 27 - 5.4= 21.6
36 as a % of 27 = 100*36/27 = 133.33... %36 as a % of 27 = 100*36/27 = 133.33... %36 as a % of 27 = 100*36/27 = 133.33... %36 as a % of 27 = 100*36/27 = 133.33... %
To find the Greatest Common Factor (GCF) of 27, 54, and 81, we need to first find the prime factorization of each number. The prime factorization of 27 is 3 x 3 x 3, the prime factorization of 54 is 2 x 3 x 3 x 3, and the prime factorization of 81 is 3 x 3 x 3 x 3. The GCF is the product of the common prime factors raised to the smallest exponent, which in this case is 3 x 3 x 3 = 27. Therefore, the GCF of 27, 54, and 81 is 27.