3 times a times b.
It is an algebraic expression because it has no equality sign.
The expression (3ab) represents the product of three, the variable (a), and the variable (b). It indicates that you multiply these three quantities together. This expression can be used in various mathematical contexts, such as algebra, where (a) and (b) could represent numbers or other algebraic expressions.
12ab+3ab=15ab
GCF(6a2bx, 15ab2x-24ab) = GCF[6a2bx, 3ab(5bx-8)] = 3ab
To simplify the expression (2a^2b + a^2 + 5ab + 3ab^2 + b^2 + 2(a^2b + 2ab)), first distribute the 2 in the last term to get (2a^2b + 4ab). Combining like terms, we group all terms with (a^2b), (ab), (ab^2), and constant terms. The final simplified expression is (3a^2b + 9ab + 3ab^2 + b^2).
3ab - a - 3b2 + b = -3b2 + 3ab + b - a = -3b(b - a) + 1(b - a) = (1 - 3b)(b - a)
3ab[35 - 4]
It is an algebraic expression because it has no equality sign.
The expression (3ab) represents the product of three, the variable (a), and the variable (b). It indicates that you multiply these three quantities together. This expression can be used in various mathematical contexts, such as algebra, where (a) and (b) could represent numbers or other algebraic expressions.
Factorizing 3ab + 3ac gives 3a (b + c).Factorizing is to express a number or expression as a product of factors.When factorizing always look for common factors. To factorize (3ab + 3ac) look for the highest factor between the two terms (3a). 3ab + 3ac = 3a (b + c)
The answer to the product of a and b divided by an expression that is 3 times their difference is 3ab(a+b).
(3b - 1)(a - b)
2a-3ab = -1
12ab+3ab=15ab
3ab x 2c = 6abc
GCF(6a2bx, 15ab2x-24ab) = GCF[6a2bx, 3ab(5bx-8)] = 3ab
To simplify the expression (2a^2b + a^2 + 5ab + 3ab^2 + b^2 + 2(a^2b + 2ab)), first distribute the 2 in the last term to get (2a^2b + 4ab). Combining like terms, we group all terms with (a^2b), (ab), (ab^2), and constant terms. The final simplified expression is (3a^2b + 9ab + 3ab^2 + b^2).