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Q 1/9
Score 0
Which postulate can be used to prove that two triangles are congruent if two angles and the included side of one triangle are equal to two angles and the included side of another triangle?
30
ASA (Angle-Side-Angle)
SSS (Side-Side-Side)
AAS (Angle-Angle-Side)
SAS (Side-Angle-Side)
Q 2/9
Score 0
If two triangles have all three corresponding sides equal, which postulate or theorem can be used to prove their congruence?
30
ASA (Angle-Side-Angle)
AAS (Angle-Angle-Side)
SSS (Side-Side-Side)
SAS (Side-Angle-Side)
9 questions
Q.
Which postulate can be used to prove that two triangles are congruent if two angles and the included side of one triangle are equal to two angles and the included side of another triangle?
1
30 sec
Q.
If two triangles have all three corresponding sides equal, which postulate or theorem can be used to prove their congruence?
2
30 sec
Q.
Which criterion states that if two angles and a non-included side of one triangle are equal to two angles and a non-included side of another triangle, the triangles are congruent?
3
30 sec
Q.
In a pair of triangles, if two sides and the angle between them in one triangle are equal to two sides and the angle between them in another triangle, which criterion can be used to prove their congruence?
4
30 sec
Q.
If two right triangles have their hypotenuses and one corresponding leg equal, which criterion can be used to prove their congruence?
5
30 sec
Q.
In two triangles, if the corresponding angles are equal and one side of one triangle is equal to the corresponding side of another triangle, what criterion can be used to prove their congruence?
6
30 sec
Q.
Two triangles are congruent if they satisfy the criteria for congruence. What is the minimum information required to prove the congruence of two triangles using the SAS criterion?
7
30 sec
Q.
What congruence postulate can be used when you know two angles and any side of one triangle are equal to two angles and any side of another triangle?
8
30 sec
Q.
For which type of triangles is the HL (Hypotenuse-Leg) theorem applicable to prove congruence?