Chapter 4: Q12WE. (page 156)
Complete each statement.
It is equidistant from and , then lies on the .

Short Answer
It is equidistant from and , then lies on the perpendicular bisector of .
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Chapter 4: Q12WE. (page 156)
Complete each statement.
It is equidistant from and , then lies on the .

It is equidistant from and , then lies on the perpendicular bisector of .
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For the following figure, can the triangle be proved congruent. If so, what postulate can be used?

Write proof in two-column form.
Given: ;
Prove:

For the following figure, can the triangle be proved congruent? If so, what postulate can be used?

For the following figure, can the triangle be proved congruent. If so, what postulate can be used?

Draw an isosceles triangle and then join the midpoints of its sides to form another triangle. What can you deduce about this second triangle? Explain.
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