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Area of Trapezoids, Rhombi, and Kites Worksheet - Maze Activity

Rated 4.86 out of 5, based on 73 reviews
4.9 (73 ratings)
;
Amazing Mathematics
8.8k Followers
Grade Levels
8th - 11th
Resource Type
Standards
Formats Included
  • PDF
  • Google Apps™
$1.50
$1.50
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Amazing Mathematics
8.8k Followers
Includes Google Apps™
The Teacher-Author indicated this resource includes assets from Google Workspace (e.g. docs, slides, etc.).
Easel Activity Included
This resource includes a ready-to-use interactive activity students can complete on any device.  Easel by TPT is free to use! Learn more.
Also included in
  1. This bundle includes all the notes, worksheets, & activities in my store that pertain to High School Geometry.Does this Include Digital Resources?As of May 2024 over 85% of this bundle includes a digital Google Slides or Forms option.Please view the preview to view the content list & which r
    Price $105.00Original Price $203.50Save $98.50
  2. This bundle includes my 7 Area of Polygons and Circles Activities for a High School Geometry Classroom. Included are 6 mazes and 1 vocabulary crossword.Save money by buying the bundle and be prepared for an Area of Polygons & Circles Unit full of engaging activities.Important InformationThis bu
    Price $7.70Original Price $11.00Save $3.30
  3. This bundle includes all the mazes in my store that pertain to Geometry. Important InformationIf you own the Geometry Bundle, DO NOT BUY this bundle. These mazes are included in the Geometry Bundle.Three Forms of Use Included for Each MazePrintable PDFGoogle SlidesEasel by TPTLooking for the Entire
    Price $56.70Original Price $81.00Save $24.30

Description

Printable PDF, Google Slides & Easel by TPT Versions are included in this distance learning ready activity which consists of 11 area of Kites, Rhombi, & Trapezoids problems. It is a self-checking worksheet that allows students to strengthen their skills at solving for area in a kite, rhombus, or trapezoid.

This maze is intended for use in a High School Geometry classroom.

Easy Differentiation

This maze contains 2 versions of the same maze. The 2 versions follow the same route and are very similar. They can be used in the same classroom side-by-side to differentiate instruction.

Version 1

  • “Easy Version”
  • No extra information. Only needed information is listed.
  • No extra work required

Version 2

  • “Regular/Advanced Version”
  • Intended for use in a High School Geometry classroom
  • Includes unnecessary information to trick students
  • Some problems require properties of Right Triangles to find the needed lengths. (Pythagorean Theorem, SOH-CAH-TOA, & 30°-60°-90° Triangles)

Please view the preview to ensure this product is appropriate for your classroom. The preview shows the entire maze.

Distance learning?

  • No problem! This activity now includes Google Slides & Easel by TPT digital options!
  • Explore the ⌨ Distance Learning in my store for more digital resources

Three Forms of Use Included

  1. Printable PDF
  2. Google Slides
  3. Easel by TPT

Answer key is included for easy grading.

Not all boxes are used in the maze to prevent students from just trying to figure out the route. Students will have to successfully calculate 9 areas to complete the maze.

Similar Activities

• Click Here for more Calculating Area activities

• Click Here for more Math Mazes

• Click Here for more Geometry activities

This product is also part of the following money saving bundle

High School Geometry Bundle - All My Geometry Products for 1 Low Price

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Standards

to see state-specific standards (only available in the US).
Apply the Pythagorean Theorem to determine unknown side lengths in right triangles in real-world and mathematical problems in two and three dimensions.
Use special triangles to determine geometrically the values of sine, cosine, tangent for π/3, π/4 and π/6, and use the unit circle to express the values of sine, cosine, and tangent for π–𝘹, π+𝘹, and 2π–𝘹 in terms of their values for 𝘹, where 𝘹 is any real number.
Prove the Pythagorean identity sin²(θ) + cos²(θ) = 1 and use it to find sin(θ), cos(θ), or tan(θ) given sin(θ), cos(θ), or tan(θ) and the quadrant of the angle.
Use trigonometric ratios and the Pythagorean Theorem to solve right triangles in applied problems.
Prove the Laws of Sines and Cosines and use them to solve problems.

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