160 likes | 1.42k Views
B. C. Given: E is the midpoint of BD E is the midpoint of AC Prove: ∆ABC = ∆CDE. E. <1. <2. A. D. Statement Reason E is the midpoint of BD given E is the midpoint of AC given. B. C. Given: E is the midpoint of BD E is the midpoint of AC Prove: ∆ABC = ∆CDE. E. <1. <2. A. D.
E N D
B C Given: E is the midpoint of BD E is the midpoint of AC Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given E is the midpoint of AC given
B C Given: E is the midpoint of BD E is the midpoint of AC Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given E is the midpoint of AC given BE = DE definition of a midpoint
B C Given: E is the midpoint of BD E is the midpoint of AC Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given E is the midpoint of AC given BE = DE definition of a midpoint AE = CE definition of a midpoint
B C Given: E is the midpoint of BD E is the midpoint of AC Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given E is the midpoint of AC given BE = DE definition of a midpoint AE = CE definition of a midpoint <1 = <2 vertical angle theorem
B C Given: E is the midpoint of BD E is the midpoint of AC Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given E is the midpoint of AC given BE = DE definition of a midpoint AE = CE definition of a midpoint <1 = <2 vertical angle theorem ∆ABC = ∆CDE SAS
B C Given: E is the midpoint of BD <B = <D Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <B = <D given
B C Given: E is the midpoint of BD <B = <D Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <B = <D given BE = DE definition of a midpoint
B C Given: E is the midpoint of BD <B = <D Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <B = <D given BE = DE definition of a midpoint <1 = <2 vertical angle theorem
B C Given: E is the midpoint of BD <B = <D Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <B = <D given BE = DE definition of a midpoint <1 = <2 vertical angle theorem ∆ABC = ∆CDE ASA
B C Given: E is the midpoint of BD <A = <C Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <A = <C given
B C Given: E is the midpoint of BD <A = <C Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <A = <C given BE = DE definition of a midpoint
B C Given: E is the midpoint of BD <A = <C Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <A = <C given BE = DE definition of a midpoint <1 = <2 vertical angle theorem
B C Given: E is the midpoint of BD <A = <C Prove: ∆ABC = ∆CDE E <1 <2 A D Statement Reason E is the midpoint of BD given <A = <C given BE = DE definition of a midpoint <1 = <2 vertical angle theorem ∆ABC = ∆CDE AAS