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Geometry Module 2 - Similarity, Proof, and Trigonometry

Geometry Module 2 - Similarity, Proof, and Trigonometry

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Last updated about 4 years ago
34 activities
Note from the author:
Included in this bundle is a set of Formatives hand-created by the Formative Team. Using resources from EngageNY Mathematics Curriculum.

All rights to this content fall under creative commons and come from EngageNY.
Source: https://www.engageny.org/
Geometry.2.A.1 - Scale Drawings – Exit Ticket
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Geometry.2.A.2 - Making Scale Drawings Using the Ratio Method – Exit Ticket
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Geometry.2.A.3 - Making Scale Drawings Using the Parallel Method – Exit Ticket
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Geometry.2.A.4 - Comparing the Ratio Method with the Parallel Method – Exit Ticket
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Geometry.2.A.5 - Scale Factors – Exit Ticket
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Geometry.2.B.10 - Dividing the King’s Foot into 12 Equal Pieces – Exit Ticket
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Geometry.2.B.10 - Dividing the King’s Foot into 12 Equal Pieces – Exit Ticket
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Geometry.2.B.11 - Dilations from Different Centers – Exit Ticket
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Geometry.2.B.6 - Dilations as Transformations of the Plane – Exit Ticket
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Geometry.2.B.7 - How Do Dilations Map Segments? – Exit Ticket
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Geometry.2.B.8 - How Do Dilations Map Lines, Rays, and Circles? – Exit Ticket
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Geometry.2.B.9 - How Do Dilations Map Angles? – Exit Ticket
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Geometry.2.C.12 - What Are Similarity Transformations, and Why Do We Need Them? – Exit Ticket
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Geometry.2.C.13 - Properties of Similarity Transformations – Exit Ticket
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Geometry.2.C.14 - Similarity – Exit Ticket
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Geometry.2.C.15 - The Angle-Angle (AA) Criterion for Two Triangles to Be Similar – Exit Ticket
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Geometry.2.C.16 - Between-Figure and Within-Figure Ratios – Exit Ticket
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Geometry.2.C.17 - The Side-Angle-Side (SAS) and Side-Side-Side (SSS) Criteria for Two Triangles to Be Similar – Exit Ticket
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Geometry.2.C.18 - Similarity and the Angle Bisector Theorem – Exit Ticket
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Geometry.2.C.19 - Families of Parallel Lines and the Circumference of the Earth – Exit Ticket
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Geometry.2.C.20 - How Far Away Is the Moon? – Exit Ticket
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Geometry.2.D.21 - Special Relationships Within Right Triangles—Dividing into Two Similar Sub-Triangles – Exit Ticket
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Geometry.2.D.22 - Multiplying and Dividing Expressions with Radicals – Exit Ticket
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Geometry.2.D.23 - Adding and Subtracting Expressions with Radicals – Exit Ticket
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Geometry.2.D.24 - Prove the Pythagorean Theorem Using Similarity – Exit Ticket
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Geometry.2.E.25 - The Definition of Sine, Cosine, and Tangent – Exit Ticket
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Geometry.2.E.27 - Sine and Cosine of Complementary Angles and Special Angles – Exit Ticket
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Geometry.2.E.28 - Solving Problems Using Sine and Cosine – Exit Ticket
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Geometry.2.E.29 - Applying Tangents – Exit Ticket
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Geometry.2.E.30 - Trigonometry and the Pythagorean Theorem – Exit Ticket
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Geometry.2.E.31 - Using Trigonometry to Determine Area – Exit Ticket
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Geometry.2.E.32 - Using Trigonometry to Find Side Lengths of an Acute Triangle – Exit Ticket
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Geometry.2.E.33 - Applying the Laws of Sines and Cosines – Exit Ticket
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Geometry.2.E.34 - Unknown Angles – Exit Ticket
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