Horizontal Stretch And Shrink Examples at Pamela Adkins blog

Horizontal Stretch And Shrink Examples. Here are some things we. To stretch or shrink the graph in the y direction, multiply or divide the output by a constant. Now we consider changes to the inside of a function. Notice that a horizontal stretch is the same as. The function v (x) = x 3 − 4x. 2f (x) is stretched in the y direction by a factor of 2, and f (x) is shrunk in the y direction by a factor of 2. • if k > 1 , the graph of y = f ( k•x ) is the graph of f ( x ) horizontally shrunk (or compressed) by dividing. Learning how we can stretch graphs. H (x) = 1/ (3x) flip it upside down: Let f(x) be the original function and let c > 0, k > 0 be real numbers.

PPT 2.5 Shifting, Reflecting, and Stretching Graphs PowerPoint
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The function v (x) = x 3 − 4x. • if k > 1 , the graph of y = f ( k•x ) is the graph of f ( x ) horizontally shrunk (or compressed) by dividing. 2f (x) is stretched in the y direction by a factor of 2, and f (x) is shrunk in the y direction by a factor of 2. Notice that a horizontal stretch is the same as. Learning how we can stretch graphs. Here are some things we. Let f(x) be the original function and let c > 0, k > 0 be real numbers. H (x) = 1/ (3x) flip it upside down: To stretch or shrink the graph in the y direction, multiply or divide the output by a constant. Now we consider changes to the inside of a function.

PPT 2.5 Shifting, Reflecting, and Stretching Graphs PowerPoint

Horizontal Stretch And Shrink Examples H (x) = 1/ (3x) flip it upside down: 2f (x) is stretched in the y direction by a factor of 2, and f (x) is shrunk in the y direction by a factor of 2. Let f(x) be the original function and let c > 0, k > 0 be real numbers. Notice that a horizontal stretch is the same as. Here are some things we. Now we consider changes to the inside of a function. H (x) = 1/ (3x) flip it upside down: The function v (x) = x 3 − 4x. To stretch or shrink the graph in the y direction, multiply or divide the output by a constant. • if k > 1 , the graph of y = f ( k•x ) is the graph of f ( x ) horizontally shrunk (or compressed) by dividing. Learning how we can stretch graphs.

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