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in this video were gonna focus on proven if two triangles are congruent now theres four postulates that you need to know the sss postulate SAS a s a and AAS so the first one tells us that if the two triangles have three sides that are congruent then the two triangles are congruent which means every part of those two triangles are congruent next if you have two sides and the included angle and then the two triangles are congruent a stands for angle S stands for side the next one angle-side ...

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Geometry: Common Core (15th Edition) answers to Chapter 4 - Congruent Triangles - Get Ready! - Page 215 11 including work step by step written by community members like you. Textbook Authors: Charles, Randall I., ISBN-10: 0133281159, ISBN-13: 978-0-13328-115-6, Publisher: Prentice Hall

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There can be different answers for questions 2 and 3. The triangles in question 2 can be made congruent by SAS or ASA depending on the information given. For question 3, some students may recognize that segment AE is in both triangles and is congruent to itself, and therefore the triangles are congruent by SAS.

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Entire lesson on constructing accurate triangles. Visit weteachmaths.co.uk for - Lessons and worksheets suitable for the 9 - 1 GCSE Specification - A-Level teaching resources for Core 1, Core 2, Core 3, Core 4, Decision 1 and Statistics 1 - Teaching resources for Level 3 Core Mathematics - Schemes of work for Higher and Foundation GCSE Maths (adapted for the 9 - 1 specification) - Topic tests ...

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Use the SAS Congruence Postulate. Ã*incL.uded GIVEN: ON, Z O, Use the A-AS Congruence Theorem. GIVEN: DF MO, ZF Z O, Use the ASA Congruence Postulate. State the third congruence that is needed to prove tha ABC using the given postulate or theorem. 4. 5. 6. GIVEN: LA ZX, LB LY, Use the AAS Congruence Theorem. GIVEN: LA ZX, AB n, GIVEN: 'X

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There are five ways to find if two triangles are congruent: SSS, SAS, ASA, AAS and HL. 1. SSS (side, side, side) SSS stands for "side, side, side" and means that we have two triangles with all three sides equal. If three sides of one triangle are equal to three sides of another triangle, the triangles are congruent. 2.