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Graph each function in Problems 49–54.
51.
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Chapter 1 Solutions
Calculus for Business, Economics, Life Sciences and Social Sciences Books a la Carte Edition Plus NEW MyLab Math with Pearson eText -- Access Card Package (13th Edition)
- In Problems 85–90, use the Intermediate Value Theorem to show that each function has a zero in the given interval. Approximate the zerocorrect to two decimal places.arrow_forwardIn Problems 11–18, match each graph to its function. A. Constant function E. Square root function B. Identity function F. Reciprocal function C. Square function G. Absolute value function D. Cube function H. Cube root function 11. 12. 13. 14. 15. 16. 17. 18.arrow_forwardIn Problems 13–24, use the graph of the function f given.arrow_forward
- In Problems 43–66, find the indicated extremum of each function on the given interval.arrow_forwardIn Problems 13–24, determine whether the graph is that of a function by using the vertical-line test. If it is, use the graph to find:(a) The domain and range (b) The intercepts, if any (c) Any symmetry with respect to the x-axis, the y-axis, or the originarrow_forwardIn Problems 49–56, for each graph of a function y = f(x), find the absolute maximum and the absolute minimum, if they exist. Identify any local maximum values or local minimum values.arrow_forward
- In Problems 49–56, for each graph of a function y = f(x), find the absolute maximum and the absolute minimum, if they exist. Identifyany local maximum values or local minimum values.arrow_forwardIn Problems 31–42:(a) Find the domain of each function. (b) Locate any intercepts. (c) Graph each function.(d) Based on the graph, find the range. (e) Is f continuous on its domain?arrow_forwardIn Problems 61–72, find the numbers at which f is continuous. At which numbers is f discontinuous?arrow_forward
- In Problems 63–66, graph each function. Be sure to label any intercepts. [Hint: Notice that each function is half a hyperbola.]arrow_forwardIn Problems 33–36, the graph of a function f is given. Use the graph to find:(a) The numbers, if any, at which f has a local maximum. What are the local maximum values?(b) The numbers, if any, at which f has a local minimum. What are the local minimum values?arrow_forwardFor Problems 4 – 8, let S be an uncountable set. Label each of the following statements as true or false, and justify your answer. There exists a bijective function f : J → S.arrow_forward
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