a.
To explain:
Whether the figure arc has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
b.
To explain:
Whether the figure ray has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
c.
To explain:
Whether the figure of two perpendicular lines has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
d.
To explain:
Whether the figure rectangle has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
e.
To explain:
Whether the figure isosceles triangle has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
f.
To explain:
Whether the figure isosceles trapezoid has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
g.
To explain:
Whether the figure rhombus has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
h.
To explain:
Whether the figure regular n-gon has line of symmetry such that the image of the figure under the reflection is the figure itself. Also, find as many reflecting lines as possible.
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A Problem Solving Approach To Mathematics For Elementary School Teachers (13th Edition)
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