Not drawn to scale 54. Numerical Analysis In the figure, a and ß are positive angles. 18 (a) Write a as a function of ß. (b) Use a graphing utility to graph the function in part (a). Determine its domain and range. (c) Use the result of part (a) to write c as a function of ß. (d) Use the graphing utility to graph the function in part (c). Determine its domain and range. (e) Complete the table. What can you infer? B 0.4 | 0.8 1.2 | 1.6 2.0 | 2.4 2.8
Not drawn to scale 54. Numerical Analysis In the figure, a and ß are positive angles. 18 (a) Write a as a function of ß. (b) Use a graphing utility to graph the function in part (a). Determine its domain and range. (c) Use the result of part (a) to write c as a function of ß. (d) Use the graphing utility to graph the function in part (c). Determine its domain and range. (e) Complete the table. What can you infer? B 0.4 | 0.8 1.2 | 1.6 2.0 | 2.4 2.8
Not drawn to scale 54. Numerical Analysis In the figure, a and ß are positive angles. 18 (a) Write a as a function of ß. (b) Use a graphing utility to graph the function in part (a). Determine its domain and range. (c) Use the result of part (a) to write c as a function of ß. (d) Use the graphing utility to graph the function in part (c). Determine its domain and range. (e) Complete the table. What can you infer? B 0.4 | 0.8 1.2 | 1.6 2.0 | 2.4 2.8
Numerical Analysis In the figure, α and β are positive angles. 18 9 c α β γ (a) Write α as a function of β. (b) Use a graphing utility to graph the function in part (a). Determine its domain and range. (c) Use the result of part (a) to write c as a function of β. (d) Use the graphing utility to graph the function in part (c). Determine its domain and range. (e) Complete the table. What can you infer?
Expression, rule, or law that gives the relationship between an independent variable and dependent variable. Some important types of functions are injective function, surjective function, polynomial function, and inverse function.
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