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1 What are the equations of the vertical and the horizontal asymptotes of the graph of y = + 4? X - 6 The vertical
1 What are the equations of the vertical and the horizontal asymptotes of the graph of y = + 4? X - 6 The vertical asymptote is . (Type an equation.)1 What are the equations of the vertical and the horizontal asymptotes of the graph of y = - 5? (x + 4)2 The vertical asymptote is (Type an equation.)Give the equations of any vertical, horizontal, or oblique asymptotes for the graph of the rational function. 7 f(x) = X - Identify any vertical asymptotes. Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. There is one vertical asymptote. Its equation is (Type an equation.) O B. There are two vertical asymptotes. The equation of the leftmost one is and the equation of the rightmost one is (Type equations.) O C. There are no vertical asymptotes.Give the equations of any vertical, horizontal, or oblique asymptotes for the graph of the rational function. 2-6x f(x) = 2x + 3 Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. The equation of the vertical asymptote is x = (Type an integer or a fraction. Simplify your answer.) O B. There is no vertical asymptote.Give the equations of any vertical, horizontal, or oblique asymptotes for the graph of the rational function. 2 5 f(x) = x+3 Select the correct answer below and, if necessary, fill in the answer box to complete your choice. O A. The equation of the vertical asymptote is x = (Type an integer or a simplified fraction.) O B. There is no vertical asymptote.Give the equations of any vertical, horizontal, or oblique asymptotes for the graph of the rational function. 2 - 2x - 3 f(x) = 2x- - x - 10 Select the correct choice below and fill in any answer boxes within your choice. O A. The vertical asymptotes are x = (Use a comma to separate answers as needed.) O B. There is no vertical asymptote.Let the average number of vehicles arriving at the gate of an amusement park per minute be equal to k, and let the average number of vehicles admitted by the park attendants be equal to r. Then, the average waiting time T (in minutes) for each vehicle arriving at the park is given by the rational function defined by the equation T(r) = - 4r - k 2r- - 2kr where r > k. Complete parts (a) and (b). (a) It is known from experience that on Saturday afternoon k = 28. Use graphing to estimate the admittance rate r that is necessary to keep the average waiting time T for each vehicle to 30 sec. per min (Round to the nearest whole number as needed.)
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