Geometry 2D
29 Units, 68 Skills
Geometry - Shape Classification (2D) - Intro
Unit 1
Geometry - Angle Basics
Unit 2
Geometry - Triangle Classification - Practice
Unit 3
Geometry - Shape Classification (2D) - Practice
Unit 4
Perimeter Intro
Unit 5
Cartesian Grid Foundations
Unit 6
Area Intro
Unit 7
Area and Perimeter Basic Shapes
Unit 8
Geometry - Shape Classification (2D) - Advanced
Unit 9
Geometry - Angles and Transformations - Intro
Unit 10
Triangle Area - Intro
Unit 11
Cartesian Grid Basics - Intro
Unit 12
Cartesian Grid Basics - Practice
Unit 13
Geometry - Angles and Transformations - Practice
Unit 14
Geometry - Circle Circumference - Intro
Unit 15
Geometry - Shape Classification (3D) - Intro
Unit 16
Area and Perimeter Complex Shapes
Unit 17
Triangle Area - Practice
Unit 18
Geometry - Circle Area - Intro
Unit 19
Geometry - Shape Classification (3D) - Practice
Unit 20
Area and Perimeter Logic - Intro
Unit 21
Geometry - Isosceles and Equilateral Triangles
Unit 22
Cartesian Grid Geometry Logic - Intro
Unit 23
Geometry - Intersecting, Parallel, and Perpendicular Lines
Unit 24
Cartesian Grid Geometry Logic - Practice
Unit 25
Area and Perimeter Logic - Practice
Unit 26
Cartesian Grid Distance - Intro
Unit 27
Geometry - Intermediate - Intro
Unit 28
Geometry - Intermediate - Practice
Unit 29
In this math unit, students progress through a series of topics focusing on geometric concepts, specifically angles and transformations. The unit begins with foundational skills such as identifying and naming angles in various configurations like simple angles, angles within triangles, and specific degree angles. It steadily advances towards practical applications, like calculating missing angles in geometric figures—triangles, kites, and general shapes—by utilizing properties like the sum of interior angles and complementary angles that add up to specific totals like 90 or 180 degrees. The latter part of the unit introduces students to the concept of geometric transformations, starting with identifying reflections. Students learn to discern the type of transformation that has occurred between two shapes, whether through rotation, translation, or reflection. This integration of transformation knowledge builds on the previously established understanding of angle properties, culminating in a comprehensive approach to handling basic to intermediate geometric challenges. These skills pave the way for more complex studies in geometry involving properties and relationships between different shapes and the transformations that link them.
Skills you will learn include:
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