5 - 2 + 11 = 14
11 + ab is the expression.
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.
85 + c; 85 + (-11) = 74
There is no rational factorisation to this expression.
11-3p
When x = 2, 3x + 5 = 11.
11 + ab is the expression.
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.
(2t + 1)(3t + 11)
It is: 11p+11 simplified
85 + c; 85 + (-11) = 74
There is no rational factorisation to this expression.
It is: 11-6x as a simplified expression
The answer depends on what you mean by 11 in(n) a half - which is not an expression that is recognised.
11-3p
-14
11p+11