The simplest answer is f(input) = 1. That is, whatever you input, the output is 1.
On = 2n - 1 so O13 = 2*13 - 1 = 26 - 1 = 25
On = 2n - 1 then O13 = 2*13 - 1 = 26 - 1 = 25
To find the value of G(3), substitute 3 for x in the function G(x) = 4x + 1. This gives G(3) = 4(3) + 1 = 12 + 1 = 13. Therefore, the value of G(3) is 13.
25 apex
13, I’m pretty sure!
13
the reciprocal (aka multiplicative inverse) of a number is 1/number, so the reciprocal of -13 is -1/13 (I moved the negative from the 13 to the 1 as per convention, 1/-13 = -1/13). The reciprocal of any number is what you have to multiply that number by to yield 1. -13 * -1/13 = (-13*-1)/13 = 13/13 = 1
13 ÷ 1/3 = 13/1 ÷ 1/3 = 13/1 × 3/1 = (13×3)/(1×1) = 39/1 = 39.
14
The expression (-3x^2 - 13) represents a quadratic function in terms of (x). It consists of a term that includes (x) squared, scaled by -3, and a constant term -13. This function opens downward due to the negative coefficient of (x^2). The graph of this function would be a parabola that intersects the y-axis at -13.
1, -1, 13, -13
1 and 13.