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The flgure below has a point marked with a large dot.
First, translate the figure 5 units down.
Then, glve the coordinates of the marked point in the original figure and the final figure.
Point in original figure: ( 
◻,◻
Point in final figure: 
◻
Check
2024 McGraw Hill LLC

1 \checkmark 1 \newline22\newline33\newline44\newline55\newline66\newline77\newline88\newline99\newline1010\newlineThe flgure below has a point marked with a large dot.\newlineFirst, translate the figure 55 units down.\newlineThen, glve the coordinates of the marked point in the original figure and the final figure.\newlinePoint in original figure: ( , \square, \square \newlinePoint in final figure: \square \newlineCheck\newline20242024 McGraw Hill LLC

Full solution

Q. 1 \checkmark 1 \newline22\newline33\newline44\newline55\newline66\newline77\newline88\newline99\newline1010\newlineThe flgure below has a point marked with a large dot.\newlineFirst, translate the figure 55 units down.\newlineThen, glve the coordinates of the marked point in the original figure and the final figure.\newlinePoint in original figure: ( , \square, \square \newlinePoint in final figure: \square \newlineCheck\newline20242024 McGraw Hill LLC
  1. Translate Down: Translate the figure 55 units down. This means we subtract 55 from the yy-coordinate of the original point.
  2. Original Coordinates: The original coordinates are given as ,\square,\square. Let's assume the original coordinates are x,yx, y.
  3. Calculate New Y-coordinate: After translation, the new y-coordinate will be y5y - 5. The x-coordinate remains the same.
  4. Final Point Calculation: If the original point is (x,y)(x, y), the final point will be (x,y5)(x, y - 5).
  5. Unable to Solve: But we don't know the original coordinates, so we can't actually find the final coordinates. Oops, looks like we can't solve this without the original point's coordinates.

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