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13 Nov 2019
4. (26 pts.) For the given function, determine each of the following by applying the graphing strategy discussed in class. -10c f(x) = (r-2㢠(a) The domain of f(x). (b) The r-intercept of f(x). (c) The y-intercept of f(x). (d) Any vertical asymptote(s) of f(x). (e) Any horizontal asymptote of f(x). (f) The intervals on which f(zr) is increasing. ()The coordinates of any point (s) of inflection. (g) The intervals on which /(r) is decreasing. (m) An accurate graph of f(x). (h) The coordinates of any local maxima. (i) The coordinates of local minima. G) The intervals on which f(x) is concave up. (k) The intervals on which f(x) is concave down.
4. (26 pts.) For the given function, determine each of the following by applying the graphing strategy discussed in class. -10c f(x) = (r-2㢠(a) The domain of f(x). (b) The r-intercept of f(x). (c) The y-intercept of f(x). (d) Any vertical asymptote(s) of f(x). (e) Any horizontal asymptote of f(x). (f) The intervals on which f(zr) is increasing. ()The coordinates of any point (s) of inflection. (g) The intervals on which /(r) is decreasing. (m) An accurate graph of f(x). (h) The coordinates of any local maxima. (i) The coordinates of local minima. G) The intervals on which f(x) is concave up. (k) The intervals on which f(x) is concave down.
Patrina SchowalterLv2
13 Nov 2019