1. A box is to be constructed from a sheet of cardboard that is 20 cm...
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1. A box is to be constructed from a sheet of cardboard that is 20 cm by 60 cm, by cutting out squares of length x by x from each corner and bending up the sides. What is the maximum volume this box could have? 2. Find the amplitude and period of y=-3cos(2x + 3). Use your calculator to graph the function and state its symmetry. Find the first positive x-intercept using your calculator's zero function. 3. Find two functions f(x) and g(x) such that f[g(x)] = x but g[f(x)] does not equal x. 4. State the vertical, horizontal asymptotes and zeros of the rational function, f(x) = Why is there no zero at x = -1? x+3x+2 X+5X+4 5. Give an example and explain why a polynomial can have fewer x-intercepts than its number of roots. 1. A box is to be constructed from a sheet of cardboard that is 20 cm by 60 cm, by cutting out squares of length x by x from each corner and bending up the sides. What is the maximum volume this box could have? 2. Find the amplitude and period of y=-3cos(2x + 3). Use your calculator to graph the function and state its symmetry. Find the first positive x-intercept using your calculator's zero function. 3. Find two functions f(x) and g(x) such that f[g(x)] = x but g[f(x)] does not equal x. 4. State the vertical, horizontal asymptotes and zeros of the rational function, f(x) = Why is there no zero at x = -1? x+3x+2 X+5X+4 5. Give an example and explain why a polynomial can have fewer x-intercepts than its number of roots.
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