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TRANSLATE Horizontally -5

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Presentation on theme: "TRANSLATE Horizontally -5"— Presentation transcript:

1 TRANSLATE Horizontally -5
B’ C ’ B C Slide it 5 to the left

2 A’ A B’ C ’ B C TRANSLATE (6, 4)
Slide 6 to the right, then slide 4 up.)

3 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. -3, -1 A -5, -5 B -2, -5 C

4 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin.

5 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin.

6 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

7 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

8 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

9 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

10 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

11 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

12 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

13 Pretend ABC is attached to the origin.
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II

14 B’ A’ C ’ ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin.
Now, give it a push -- clockwise -- into Quadrant II B’ A’ C ’

15 B’ A’ C ’ ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin.
Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. B’ A’ C ’

16 -3, -1 B’ A’ C ’ ROTATE 90 CLOCKWISE
Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. B’ A’ C ’ -3, -1

17 -1, 3 -3, -1 B’ A’ C ’ ROTATE 90 CLOCKWISE
Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. B’ -1, 3 A’ C ’ -3, -1

18 -1, 3 -3, -1 B’ A’ C ’ SWITCH THE COORDINATES
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. Here’s the shortcut: SWITCH THE COORDINATES 2. TAKE THE OPPOSITE OF Y B’ -1, 3 A’ C ’ -3, -1

19 -1, 3 -3, -1 -5, -5 B’ A’ C ’ SWITCH THE COORDINATES
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. Here’s the shortcut: SWITCH THE COORDINATES 2. TAKE THE OPPOSITE OF y B’ -1, 3 A’ C ’ -3, -1 -5, -5

20 -5, 5 -1, 3 -3, -1 -5, -5 B’ A’ C ’ SWITCH THE COORDINATES
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. Here’s the shortcut: SWITCH THE COORDINATES 2. TAKE THE OPPOSITE OF Y B’ -5, 5 -1, 3 A’ C ’ -3, -1 -5, -5

21 -5, 5 -1, 3 -3, -1 -5, -5 -2, -5 B’ A’ C ’ SWITCH THE COORDINATES
ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. Here’s the shortcut: SWITCH THE COORDINATES 2. TAKE THE OPPOSITE OF Y B’ -5, 5 -1, 3 A’ C ’ -3, -1 -5, -5 -2, -5

22 ROTATE 90 CLOCKWISE Pretend ABC is attached to the origin. Now, give it a push -- clockwise -- into Quadrant II Let’s look at the old and new ordered pairs. Here’s the shortcut: SWITCH THE COORDINATES 2. TAKE THE OPPOSITE OF THE NEW Y B’ -5, 5 -1, 3 A’ C ’ -5, 2 -3, -1 -5, -5 -2, -5

23 Give it a push into Quadrant I
ROTATE 180 -3, -1 A Give it a push into Quadrant I -5, -5 B -2, -5 C

24 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

25 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

26 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

27 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

28 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

29 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

30 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

31 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

32 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

33 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

34 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

35 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

36 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

37 Give it a push into Quadrant I
ROTATE 180 Give it a push into Quadrant I

38 Give it a push into Quadrant I
ROTATE 180 C ’ B’ A’ Give it a push into Quadrant I

39 C ’ B’ A’ ROTATE 180 Give it a push into Quadrant I
Compare the old and new coordinates.

40 ROTATE 180 2, 5 C ’ 5, 5 B’ 3, 1 A’ -3, -1 Give it a push into Quadrant I Compare the old and new coordinates. -5, -5 -2, -5

41 2, 5 5, 5 3, 1 -3, -1 -5, -5 -2, -5 C ’ B’ A’ CHANGE BOTH SIGNS.
ROTATE 180 2, 5 C ’ 5, 5 B’ 3, 1 A’ -3, -1 Give it a push into Quadrant I Compare the old and new coordinates. What’s the shortcut? CHANGE BOTH SIGNS. -5, -5 -2, -5

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43 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV -3, -1 A -5, -5 B -2, -5 C

44 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV

45 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV

46 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV

47 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV

48 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV

49 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV

50 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV

51 Give it a push into Quadrant IV
ROTATE 90 COUNTERCLOCKWISE Give it a push into Quadrant IV A C ’ A’ B C B’

52 A C ’ A’ B C B’ ROTATE 90 COUNTERCLOCKWISE
Give it a push into Quadrant IV Compare the old and new coordinates. A C ’ A’ B C B’

53 ROTATE 90 COUNTERCLOCKWISE
Give it a push into Quadrant IV Compare the old and new coordinates. -3, -1 A 5, -2 C ’ 1, -3 A’ -5, -5 B -2, -5 C 5, -5 B’

54 ROTATE 90 COUNTERCLOCKWISE
Give it a push into Quadrant IV Compare the old and new coordinates. Shortcut: SWITCH THE COORDINATES. 2. TAKE THE OPPOSITE OF THE NEW X -3, -1 A 5, -2 C ’ 1, -3 A’ -5, -5 B -2, -5 C 5, -5 B’

55 Pretend the x-axis is a mirror.
REFLECT ACROSS THE x-AXIS Pretend the x-axis is a mirror. Reflect each vertex. B’ A’ D ’ C ’ C D A B

56 Pretend the y-axis is a mirror.
REFLECT ACROSS THE y-AXIS Pretend the y-axis is a mirror. Reflect each vertex. C ’ C D ’ D A A’ B B’

57 4, 2 -4, 2 6, -2 -2, -2 C ’ D ’ D C A B A’ B’ -2, 1 2, 1 -1, -1 3, -1
DILATE BY A FACTOR OF 2 Find the coordinates for all vertices. 4, 2 C ’ -4, 2 D ’ -2, 1 2, 1 D C -1, -1 3, -1 A B 6, -2 -2, -2 A’ B’ Multiply each value by the factor: 2

58 DILATE BY A FACTOR OF -6, 6 D 3, 6 C -2, 2 D ’ 1, 2 C ’ Find the coordinates for all vertices. 1/3 , -1 A’ 2, -1 B’ 1, -3 A 6, -3 B Multiply each value by the factor: 1/3 or Divide by 3

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