QUESTION IMAGE
Question
\\(\delta abc \cong \delta rqp\\). using cpctc, find the congruent corresponding parts and their measures.
\\(pr = ca = \text{select}\\)
\\(rq = \text{select} = \text{select}\\)
\\(pq = \text{select} = \text{select}\\)
\\(m\angle p = m\angle \text{select} = \text{select}^\circ\\)
\\(m\angle r = m\angle \text{select} = \text{select}^\circ\\)
\\(m\angle q = m\angle \text{select} = \text{select}^\circ\\)
🆕 New Concept Discovered: CPCTC (Corresponding Parts of Congruent Triangles are Congruent)
Matching corresponding vertices in congruent triangles to find equal sides and angles.
Step 1: Identify corresponding parts from the congruence statement
The problem states that:
\[ \Delta ABC \cong \Delta RQP \]
This tells us the exact correspondence between the vertices of the two triangles:
- Vertex \( A \) corresponds to vertex \( R \)
- Vertex \( B \) corresponds to vertex \( Q \)
- Vertex \( C \) corresponds to vertex \( P \)
Using this correspondence, we can pair up the congruent sides:
- \( AB \cong RQ \)
- \( BC \cong QP \) (or \( PQ \))
- \( AC \cong RP \) (or \( PR \))
And the congruent angles:
- \( \angle A \cong \angle R \)
- \( \angle B \cong \angle Q \)
- \( \angle C \cong \angle P \)
Step 2: Find the lengths of the sides
From the given image, we have the measurements for \( \Delta ABC \):
- \( AC = 9 \)
- \( BC = 6 \)
Using the corresponding side relationships:
- \( PR = CA = 9 \)
- \( RQ = AB \) (not given directly, but we can match the names)
- \( PQ = BC = 6 \)
Step 3: Find the measures of the angles
From the given image, we have the angle measures for \( \Delta ABC \):
- \( m\angle B = 75^\circ \)
- \( m\angle C = 59^\circ \)
We can find the third angle, \( m\angle A \), using the triangle angle sum theorem:
\[ m\angle A = 180^\circ - (75^\circ + 59^\circ) = 180^\circ - 134^\circ = 46^\circ \]
Now, match the corresponding angles to find their measures:
- \( m\angle P = m\angle C = 59^\circ \)
- \( m\angle R = m\angle A = 46^\circ \)
- \( m\angle Q = m\angle B = 75^\circ \)
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- \( PR = CA = 9 \)
- \( RQ = AB \)
- \( PQ = BC = 6 \)
- \( m\angle P = m\angle C = 59^\circ \)
- \( m\angle R = m\angle A = 46^\circ \)
- \( m\angle Q = m\angle B = 75^\circ \)