G is the midpoint of AM and of QT. What extra piece of information do you need to prove that triangle AQG is congruent to triangle MTG by SSS?
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Question 6
6.
Which triangles are congruent in the figure?
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Question 7
7.
How are these 2 triangles congruent?
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Question 8
8.
If triangle AEG is congruent to triangle QJZ which figure matches?
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Question 9
9.
What is the measurement of angle ACD?
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Question 10
10.
Classify triangle ABC.
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Question 11
11.
Classify triangle ABD.
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Question 12
12.
If ED is congruent to RT, and angle T is congruent to angle D, and angle F is congruent to angle S what method could be used to prove congruence?
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Question 13
13.
What additional piece of information do you need for ASA?
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Question 14
14.
What extra piece of information do you need to prove that triangle LMN and triangle QRS are congruent by SAS?
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Question 15
15.
What is the value of x?
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Question 16
16.
What is the value of y?
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Question 17
17.
What is the value of z?
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Question 18
18.
What is the best description of this triangle?
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Question 19
19.
What is the reason for number 19 in this proof?
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Question 20
20.
What is the reason for number 20 in this proof?
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Question 21
21.
What is the reason for number 21 in this proof?
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Question 22
22.
Find the value of x.
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Question 23
23.
If the measures of the angles of a triangle are represented by x-5, 2x+3, and 4x find the value of x. Hint: angles of a triangle always add up to 180°.
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Question 24
24.
How would these triangles be proved to be congruent?
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Question 25
25.
Triangle QRS is an equilateral triangle. What is the value of x?
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Question 26
26.
Triangle QRS is an equilateral triangle. How long is side RS?
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Question 27
27.
Given angle A is congruent to angle R.
What sides must you know to be congruent to prove triangle ABC congruent to triangle RST by SAS?
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Question 28
28.
What is the value of x?
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Question 29
29.
How long is side JK?
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Question 30
30.
What is the value of x?
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Question 31
31.
What is the value of y?
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Question 32
32.
What is the value of x?
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Question 33
33.
What is the value of y?
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Question 34
34.
If you know that point M is the midpoint of TS and UR, which of the triangle congruence methods could be used to prove triangle TUM and triangle RSM are congruent?