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Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet
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Description

This no-prep Identifying Rigid Motions lesson is a great way to review translations, reflections, and rotations. This resource includes guided notes with an accompanying video, plus an extra practice worksheet so your students can get further practice with rigid transformations, whether you assign it in class or for homework! ​​Students will identify what rigid motions have occurred when given a table or graph. (This includes single rigid motions and a series of rigid motions.)

This Identifying Rigid Motions Notes & Practice four page packet includes:

  • Short and simple note section
  • 7 sample questions
  • Includes singular and series of rigid motions
  • Corresponding YouTube video that works through the notes and 8 sample questions
  • Additional practice worksheet - great for homework!
  • Extension problems - great for differentiating for an honors class!
  • Handwritten answer key

These notes are perfect to introduce a new topic and ensure students get sufficient practice. The practice problems can also best be used for homework, while the extension problems are great for early finishers or an advanced class.

The best part? The two note pages come with a corresponding YouTube video, perfect for a flipped classroom or absent students! You can watch the YouTube video that covers the notes and sample questions HERE! (This resource also includes an additional practice page + page of extension problems that are not part of the video.)

⭐️ Helpful Links ⭐️

▪️Coordinating Activity: Rigid Motions in Geometry - Circuit/Scavenger Hunt

▪️Upgrade & Save 25%: Rigid Motions Notes & Worksheet Bundle

▪️Upgrade BIG & Save 45%: Full Year of Geometry Notes & Activities Bundle


Having difficulty with a file?

Submit a help ticket, or ask a question on the Q& A tab before leaving feedback.

___________________________________

Copyright © Acute Geometry Class.

Permission to copy for single classroom use only.

Please purchase additional licenses if you intend to share this product.

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

Identifying Rigid Transformations Guided Notes Lesson and Practice Worksheet

Rated 4 out of 5, based on 1 reviews
4.0 (1 rating)
Acute Geometry Class
1.3k Followers
$2.75

Highlights

Digital downloads
Grades icon
Grades
10th
Subjects icon
Subjects
Standards icon
Standards
Pages
4 + answer key
Answer Key
Included

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Description

This no-prep Identifying Rigid Motions lesson is a great way to review translations, reflections, and rotations. This resource includes guided notes with an accompanying video, plus an extra practice worksheet so your students can get further practice with rigid transformations, whether you assign it in class or for homework! ​​Students will identify what rigid motions have occurred when given a table or graph. (This includes single rigid motions and a series of rigid motions.)

This Identifying Rigid Motions Notes & Practice four page packet includes:

  • Short and simple note section
  • 7 sample questions
  • Includes singular and series of rigid motions
  • Corresponding YouTube video that works through the notes and 8 sample questions
  • Additional practice worksheet - great for homework!
  • Extension problems - great for differentiating for an honors class!
  • Handwritten answer key

These notes are perfect to introduce a new topic and ensure students get sufficient practice. The practice problems can also best be used for homework, while the extension problems are great for early finishers or an advanced class.

The best part? The two note pages come with a corresponding YouTube video, perfect for a flipped classroom or absent students! You can watch the YouTube video that covers the notes and sample questions HERE! (This resource also includes an additional practice page + page of extension problems that are not part of the video.)

⭐️ Helpful Links ⭐️

▪️Coordinating Activity: Rigid Motions in Geometry - Circuit/Scavenger Hunt

▪️Upgrade & Save 25%: Rigid Motions Notes & Worksheet Bundle

▪️Upgrade BIG & Save 45%: Full Year of Geometry Notes & Activities Bundle


Having difficulty with a file?

Submit a help ticket, or ask a question on the Q& A tab before leaving feedback.

___________________________________

Copyright © Acute Geometry Class.

Permission to copy for single classroom use only.

Please purchase additional licenses if you intend to share this product.

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

Reviews

4.0
Rated 4 out of 5, based on 1 reviews
1
rating
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Rated 4 out of 5
October 14, 2020
I used this as extra practice for my students after teaching them about rigid motion the day before. The students took about 40-60 minutes on the activity depending on how well they understood the different transformations and the rules associated with rotations and reflections.
The Geometry Guru
(TPT Seller)
3 reviews
Grades taught: 10th
Acute Geometry Class
Response from
Acute Geometry Class
(TPT Seller)
Oct 15, 2020
Thanks for leaving a review!

Questions & Answers

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Standards

to see state-specific standards (only available in the US).
Represent transformations in the plane using, e.g., transparencies and geometry software; describe transformations as functions that take points in the plane as inputs and give other points as outputs. Compare transformations that preserve distance and angle to those that do not (e.g., translation versus horizontal stretch).
Given a geometric figure and a rotation, reflection, or translation, draw the transformed figure using, e.g., graph paper, tracing paper, or geometry software. Specify a sequence of transformations that will carry a given figure onto another.
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