QUESTION IMAGE
Question
in the diagram, $\triangle efg \cong \triangle opq$. complete the statement.
- $\overline{ef} \cong \underline{quad}$
- $\angle f \cong \underline{quad}$
- $\angle o \cong \underline{quad}$
- $m\angle o = \underline{quad}$
- $pq = \underline{quad}$
- $m\angle efg = \underline{quad}$
write a congruence statement for any figure that can be proved congruent. explain your reasoning.
8.
9.
Step1: Match congruent sides/angles
Since $\triangle EFG \cong \triangle OPQ$, corresponding parts are congruent.
- Corresponding side of $\overline{EF}$: $\overline{OP}$
- Corresponding angle of $\angle F$: $\angle P$
- Corresponding angle of $\angle G$: $\angle Q$
- Corresponding angle of $\angle O$: $\angle E$
- Corresponding side of $\overline{QO}$: $\overline{GE}$ (or $\overline{EG}$)
- Corresponding triangle of $\triangle GFE$: $\triangle QPO$
Step2: Analyze problem 8
Check congruent figures: $\triangle EGI$ and $\triangle QOM$.
- $\angle E = \angle Q$, $\angle G = \angle M$, $\overline{EG} = \overline{QM}$. By AAS congruence, $\triangle EGI \cong \triangle QOM$.
Step3: Analyze problem 9
Check congruent figures: $\triangle RTV$ and $\triangle YXZ$.
- $\overline{RT} = \overline{YX}$, $\overline{TV} = \overline{XZ}$, $\angle T = \angle X$. By SAS congruence, $\triangle RTV \cong \triangle YXZ$.
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- $\overline{OP}$
- $\angle P$
- $\angle Q$
- $\angle E$
- $\overline{GE}$ (or $\overline{EG}$)
- $\triangle QPO$
- Congruence statement: $\triangle EGI \cong \triangle QOM$
Reason: Two pairs of corresponding angles are congruent ($\angle E \cong \angle Q$, $\angle G \cong \angle M$) and a pair of non-included corresponding sides are congruent ($\overline{EG} \cong \overline{QM}$), satisfying the AAS (Angle-Angle-Side) congruence criterion.
- Congruence statement: $\triangle RTV \cong \triangle YXZ$
Reason: Two pairs of corresponding sides are congruent ($\overline{RT} \cong \overline{YX}$, $\overline{TV} \cong \overline{XZ}$) and the included corresponding angles are congruent ($\angle T \cong \angle X$), satisfying the SAS (Side-Angle-Side) congruence criterion.