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Geometry PowerPoint | Rotations DISTANCE LEARNING

Rated 3 out of 5, based on 2 reviews
3.0 (2 ratings)
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Kacie Travis
5.7k Followers
Grade Levels
7th - 10th
Subjects
Standards
Formats Included
  • Zip
Pages
13 pages
$2.00
$2.00
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Kacie Travis
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Description

Teachers, save yourself time creating lessons! This fully editable PowerPoint lesson is professionally designed and teaches students the important concepts related to rotations (with center of rotation at origin and non-origin point). The 13-slide lesson is animated for continued student engagement.

Concepts taught in this PowerPoint:


Essential Skills from this lesson:

  • definitions and explanations of:
    • transformations
    • rigid motion and isometry
    • congruent
    • pre-image
    • image
    • rotation
  • properties preserved under isometries
  • properties preserved under dilations (for comparison)
  • explanation of clockwise vs. counterclockwise
  • rules for common angles of rotations (90, 180, 270)
  • examples of how to rotate figures on a coordinate plane with center at origin
  • two methods for rotating around a non-origin point
    • using patty paper
    • using addition & subtraction to apply the rules
  • examples and guided practice

View the Preview and Video to see just what you receive in this resource.

Teaching virtually? Face to face? Both?

  • Record your voice directly onto the slides and send the file to your students to watch at home as a PowerPoint slideshow. Insert > Audio > Record Audio.
  • Use screencast software (Screencastify, Screen Cast-O-Matic, Zoom, Loom, Google Meets) to record yourself sharing your screen. Upload to YouTube and send the links to students.
  • Hold a live video session (via Zoom, Google Meets, etc.) with your students and screen share the PowerPoint slide show.
  • Record yourself teaching the lesson face to face using the PowerPoint.
  • Send the PowerPoint to absent students.
  • Use when you have a sub to ensure students are getting quality content even when you aren’t there.

You will need Microsoft PowerPoint to open. I also included a sample PDF in this download so that if there are formatting discrepancies, you can match fonts (for free) to make it format correctly. Due to the nature of the clip artists' Terms of Use, the clip art is locked, but the content is entirely editable.

Need guided notes that compliment the PowerPoint? Here you go! These Interactive Notebook Notes use the same format and examples so your students can write the notes as you teach.

My products are always 50% off for the first 24 hours. Follow me for the latest product releases and notifications by clicking here!

©Kacie Travis. All rights reserved. Purchase of this unit entitles the purchaser the right to reproduce the pages in limited quantities for classroom use only. Duplication for an entire school, an entire school system or commercial purposes is strictly forbidden without written permission from the publisher. Kacie Travis, Kacie_travis@yahoo.com

Copying any part of this product and placing it on the Internet in any form (even a personal/classroom website) is strictly forbidden and is a violation of the Digital Millennium Copyright Act (DMCA). These items can be picked up in a google search and then shared worldwide for free.

Total Pages
13 pages
Answer Key
Included
Teaching Duration
90 minutes
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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).
Develop definitions of rotations, reflections, and translations in terms of angles, circles, perpendicular lines, parallel lines, and line segments.
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.
Use geometric descriptions of rigid motions to transform figures and to predict the effect of a given rigid motion on a given figure; given two figures, use the definition of congruence in terms of rigid motions to decide if they are congruent.

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