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LAST UPDATED: 31 May, 2022 178 PEOPLE USED
Answer By: Wm Walton
A new function $$ g(x)=f(b \times x) $$ ,where b is a constant, is a horizontal stretch/compression of the function f(x). 1) If b>1, then the graph will be compressed by 1/b. 2) If $$ 0 < b < 1 $$ then the graph will be stretched by 1/b. 3) If b0, then there will be combination of a horizontal stretch or compression with a horizontal reflection.
Answer By: Ben Hitchcock
A horizontal compression (or shrinking) is the squeezing of the graph toward the y-axis. if 0 < k < 1 (a fraction), the graph is f (x) horizontally stretched by dividing each of its x-coordinates by k. • if k should be negative, the horizontal stretch or shrink is followed by a reflection in the y-axis.
Answer By: Furnish Teresa
Horizontal And Vertical Graph Stretches And Compressions images that posted in this website was uploaded by Subscribe.derbytelegraph.co.uk. Horizontal And Vertical Graph Stretches And Compressions equipped with a HD resolution 480 x 360.You can save Horizontal And Vertical Graph Stretches And Compressions for free to your devices.. If you want to Save Horizontal ...
Vertical Stretches and Compressions. One type of non-rigid transformation is a stretch or compression. A vertical stretching is the stretching of the graph away from the x-axis. A vertical compression is the squeezing of the graph towards the x-axis.
Adjust the graph of the parent function to match the vertical and horizontal shift in the original graph. In the above example, if the function has a vertical shift of 1 and a horizontal shift of pi, adjust the parent function p(x) = sin x to p1(x) = A sin (x - pi) + 1 (A is the value of the vertical stretch, which we have yet to determine).
How do you find the horizontal stretch?When by either f (x) or x is multiplied by a number, functions can “stretch” or “shrink” vertically or horizontally, respectively, when graphed.In general, a vertical stretch is given by the equation y=bf (x) y = b f ( x ) .In general, a horizontal stretch is given by the equation y=f (cx) y = f ( c x ) .
Compression is a type of stress that causes the rocks to push or squeeze against one another. It targets the center of the rock and can cause either horizontal or vertical orientation. In horizontal compression stress, the crust can thicken or shorten.
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