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Can you please help me, I can't seem to get it right... ginning of the Unit: Print off this document and complete each homework problem.

Can you please help me, I can't seem to get it right...

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ginning of the Unit: Print off this document and complete each homework problem. You must show all steps using methods learned in this course. Problems with no work or using methods not taught in the course, will be given a grade of zero. Each problem is worth 3 points and will be graded. Make sure to complete the corresponding lesson before attempting the problem. This document is due on the last day of the unit. Combine all pages into a single non-zipped document. Lesson: 2.03 Given the function f(x), find the corresponding output values f(x), for the given input (x) values. SHOW ALL STEPS. Lesson: 2.06 Given the function H(x), find the corresponding output values H(x), for the given input (x) values. SHOW WORK. Lesson: 2.06 Given the function H(x), find the corresponding output values H(x), for the given input (x) values. SHOW WORK. Lesson: 2.08 a) Input this table of values into Desmos to create a quadratic regression equation that best fits the data set which represents Film Run Times (16 mm). Copy your equation here: Is) Use your regression equation and estimate the run time for 10 in. diameter film. Show all work, and round to the nearest hundredth of a minute. Page 1 of 2 Lesson: 2.06 Given the function H(x), find the corresponding output values H(x), for the given input (x) values. SHOW WORK. Lesson: 2.08 a) Input this table of values into Desmos to create a quadratic regression equation that best fits the data set which represents Film Run Times (16 mm). Copy your equation here: is) Use your regression equation and estimate the run time for 10 in. diameter film. Show all work, and round to the nearest hundredth of a minute. Page 1 of 2 Given the piecewise function. g(x) = x - lifx 3 Find the g(x) values for the given x values. x Show work when applicable g(x) -2 O 3 5 Lesson 2.13 15 Let f ( x) = 1+6e-0.2x What is the point of maximum growth rate for the logistic function f (x)? Show all work, and round your answer to the nearest hundredth

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