where the constants A vertically scales the function. (negative A reflects the function about the x-axis.) • B horizontally scales the function. (negative B reflects the function about the y-axis.) • H horizontally shifts the function. • K vertically shifts the function. Transform f(x) into g(x) where the transformation is g(x) = 3 f(x) The function f(x) is shown below in red. Graph the transformed function g(x) by first placing a dot at ea end point of the new transformed function and then click on the "line segment" button and connect the tw blue dots. (Hint: Use pattern-matching to determine the values of the constants A, B, H, and K.) 6- 4 3. 1 -6 -5 -4 -3 -2 4 6. -1 -2 -3- -4 -5 -6 Clear All Draw: Dot Line Segment
where the constants A vertically scales the function. (negative A reflects the function about the x-axis.) • B horizontally scales the function. (negative B reflects the function about the y-axis.) • H horizontally shifts the function. • K vertically shifts the function. Transform f(x) into g(x) where the transformation is g(x) = 3 f(x) The function f(x) is shown below in red. Graph the transformed function g(x) by first placing a dot at ea end point of the new transformed function and then click on the "line segment" button and connect the tw blue dots. (Hint: Use pattern-matching to determine the values of the constants A, B, H, and K.) 6- 4 3. 1 -6 -5 -4 -3 -2 4 6. -1 -2 -3- -4 -5 -6 Clear All Draw: Dot Line Segment
ChapterP: Prerequisites
SectionP.4: Factoring Polynomials
Problem 84E: The rate of change of an autocatalytic chemical reaction is kQxkx2 where Q is the amount of the...
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Transformation of Graphs
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The exponential function is a type of mathematical function which is used in real-world contexts. It helps to find out the exponential decay model or exponential growth model, in mathematical models. In this topic, we will understand descriptive rules, concepts, structures, graphs, interpreter series, work formulas, and examples of functions involving exponents.
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