Mathematics, 01.04.2021 18:50 MAKYERAHWILLIAMS09
Transformations can be thought of as functions that take the points from one object (the pre-image) to the corresponding points on another object (the image). In the unit, you saw examples of how algebra can be used to rewrite the coordinates of points after they have been transformed. You can also use function notation to rewrite the coordinates. For example, these statements show several different ways you can use function notation for the translation, T, of a point 6 units in the positive x-direction: T(x, y) = (x + 6, y) T:(x, y) = (x + 6, y) T<6, 0>(x, y) = (x + 6, y) T6, 0(x, y) = (x + 6, y) Part A Write functions for each of the following transformations using function notation. Choose a different letter to represent each function. For example, you can use R to represent rotations. Assume that a positive rotation occurs in the counterclockwise direction. translation of a units to the right and b units up reflection across the y-axis reflection across the x-axis rotation of 90 degrees counterclockwise about the origin, point O rotation of 180 degrees counterclockwise about the origin, point O rotation of 270 degrees counterclockwise about the origin, point O
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Which system of linear inequalities is graphed? can somebody pleasssse
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The constant of proportionality is always the where k is the constant of proportionality. additionally, you can find the constant of proportionality by finding the ratio for any point onasap
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Mathematics, 22.06.2019 00:10
Given: p: 2x = 16 q: 3x – 4= 20 which is the converse of p - q? if 2x + 16, then 3x - 4 20. if 3x –4 +20, then 2x # 16. lf 2x = 16, then 3x - 4 = 20. lf 3x – 4= 20, then 2x = 16. o o
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Mathematics, 22.06.2019 00:30
1/2+1/6-3/4 simplify the given expression leaving the answer in improper fraction form.
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Transformations can be thought of as functions that take the points from one object (the pre-image)...
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