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Types of Triangles Posters and Interactive Notebook INB Set Anchor Chart

Rated 4.88 out of 5, based on 234 reviews
4.9 (234 ratings)
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Amy Alvis
4.1k Followers
Grade Levels
4th - 6th
Subjects
Standards
Formats Included
  • PDF
Pages
14 pages
$2.50
$2.50
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Amy Alvis
4.1k Followers

What educators are saying

Perfect for reviewing types of triangles with 5th grade students. They enjoyed using this resource in their interactive notebooks.
This was a perfect resource for my class this year and I will continue to use it in the upcoming years! Thanks!
Also included in
  1. This is a bundle of all my Geometry and Measurement Poster or Anchor Chart and Interactive Notebook (INB) Sets. Purchasing this bundle will give you 20% off the original prices.You will get the following sets: Polygons, Triangles, Angle Relationships, Quadrilaterals, Circles, Volume and Surface Are
    Price $22.75Original Price $32.50Save $9.75

Description

This poster and interactive notebook (INB) set covers right triangles, obtuse triangles, acute triangles, scalene triangles, isosceles triangles, equilateral triangles and area of a triangle. You will receive TWO foldable interactive graphic organizers (that you print and put into a paper notebook) and SIX triangle posters (8.5 X 11) that come in both color and black and white versions.

Thank you for looking,

Amy Alvis

Total Pages
14 pages
Answer Key
N/A
Teaching Duration
N/A
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Standards

to see state-specific standards (only available in the US).
Classify two-dimensional figures based on the presence or absence of parallel or perpendicular lines, or the presence or absence of angles of a specified size. Recognize right triangles as a category, and identify right triangles.
Understand that attributes belonging to a category of two-dimensional figures also belong to all subcategories of that category. For example, all rectangles have four right angles and squares are rectangles, so all squares have four right angles.
Find the area of right triangles, other triangles, special quadrilaterals, and polygons by composing into rectangles or decomposing into triangles and other shapes; apply these techniques in the context of solving real-world and mathematical problems.

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