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Questions, 3 hours) Question 11 of 14 This quiz: 14 po This question: K Use a graph of g to estimate lim g(x) or to
Questions, 3 hours) Question 11 of 14 This quiz: 14 po This question: K Use a graph of g to estimate lim g(x) or to show that the limit does not exist. Evaluate g(x) near x = a to support your conjecture. x-a - 2X + 2x - 1 g(x) = -; a=0 Use a graphing utility to graph g. Select the correctgraph below. O A. O B. OC. Each graph is displayed in a [ - 1, 1] by [0,5] window. Use the graphing utility to estimate lim g(x). Select the correct choice below and, if necessary, fill in the answer box to complete yo X - 0 O A. The limit appears to be approximately (Round to the nearest tenth as needed.) does not exist.U . . se a graph of g to estimate IIm g(x) or to show that the limit doe x>a s not exist. Evaluate g( x) near X: a to support your conjecture. A e_2x+2x1 9(X)='2;a=0 X Use a graphing utility to graph 9. Select the correct graph below. A. O O B. C ' on. p 9,0 l [:77 IS.' i Each graph is displayed in a [ 1,1] by [0,5] window. . Select the correct choice below and, it necessary, fill in the answer box to complete your choice. Use the graphing utility to estimate lim g(x) x,O 5 O A- The limitappears to be approximately . (Round to the nearest tenth as needed.) B. The limit does not exist. t X near 0 to support your conjecture. C) Time Remaining: 01:34 Evaluate g(x) for values 0 K Use a graph of g to estimate lim g(x) or to show that the limit does not exist. Evaluate g(x) near x = a to support your conjecture. Submit x - a e - 2X + 2x - 1 g(x) = x 2 ;a = 0 X - 0 O A. The limit appears to be approximately (Round to the nearest tenth as needed.) O B. The limit does not exist. Evaluate g(x) for values of x near 0 to support your conjecture. X - 0.1 -0.01 - 0.001 0.001 0.01 0. 1 g(x) (Round to four decimal places as needed. Does the table from the previous step support your conjecture? O A. Yes, it does. The graph and the table of values both show that g(x) approaches about the same value. O B. No, it does not. The function g(x) approaches a significantly different value in the table of values than in the graph. O C. Yes, it does. The graph and the table of values both indicate that the limit as x approaches 0 does not exist. O D. No, it does not. The function approaches different values in the table of values as x approaches 0 from the left and from the right
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