-14
To evaluate the expression ( 14 \times 3 - 2 \times 14 - 3 ), follow the order of operations. First, calculate ( 14 \times 3 = 42 ) and ( 2 \times 14 = 28 ). Then, substitute these values into the expression: ( 42 - 28 - 3 ). Finally, compute ( 42 - 28 = 14 ) and then ( 14 - 3 = 11 ). Thus, the value of the expression is 11.
To find an expression equivalent to 3(2p - 3), you can distribute the 3 to both terms inside the parentheses. This gives you 3 * 2p - 3 * 3, which simplifies to 6p - 9. Therefore, an equivalent expression is 6p - 9.
-3
To simplify the expression (4x^3 - 2x^5), you can factor out the common term, which is (2x^3). This results in the expression (2x^3(2 - x^2)). Thus, the equivalent expression is (2x^3(2 - x^2)).
-11
-14
8
To evaluate the expression ( 14 \times 3 - 2 \times 14 - 3 ), follow the order of operations. First, calculate ( 14 \times 3 = 42 ) and ( 2 \times 14 = 28 ). Then, substitute these values into the expression: ( 42 - 28 - 3 ). Finally, compute ( 42 - 28 = 14 ) and then ( 14 - 3 = 11 ). Thus, the value of the expression is 11.
To find an expression equivalent to 3(2p - 3), you can distribute the 3 to both terms inside the parentheses. This gives you 3 * 2p - 3 * 3, which simplifies to 6p - 9. Therefore, an equivalent expression is 6p - 9.
-3
The expression is 33.
To simplify the expression (4x^3 - 2x^5), you can factor out the common term, which is (2x^3). This results in the expression (2x^3(2 - x^2)). Thus, the equivalent expression is (2x^3(2 - x^2)).
69 is an equivalent expression.
10
6
when you say 3x, you mean that there are 3 x's. Multiplication implies repeated addition, so three x's added is x+x+x, which equals 3x.