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Exponent Rules: Guided Interactive Lesson

Rated 4.79 out of 5, based on 28 reviews
4.8 (28 ratings)
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Moving Towards Mastery
3.3k Followers
Grade Levels
7th - 10th, Homeschool
Subjects
Standards
Formats Included
  • PDF
  • Google Apps™
  • Internet Activities
Pages
16 student slides + 2 worksheets
$4.00
$4.00
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Moving Towards Mastery
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Includes Google Apps™
The Teacher-Author indicated this resource includes assets from Google Workspace (e.g. docs, slides, etc.).

What educators are saying

Students used this activity to interact with the integer exponent rules. They seemed to find it helpful. Thank you. I love the resource.
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Description

Extensive digital guided lesson for property of integer exponents.

The slides are scaffolded to build understanding and provide differentiation. Students will progress from informational slides to independent practice slides. The guided slides will begin with information, move towards assisted practice, and conclude with independent practice.

Slides include...

♦ Description of Properties

♦ Hyperlinks to Video Tutorials

♦ Guided steps/ assisted practice for the following properties of integer exponents...

→ Power of Zero

→ Power of One

→ Negative Power

→ Product of Powers

→ Quotient of Powers

→ Power of a Power

→ Power of a Product

→ Power of a Quotient

♦ Independent Practice

→ Determining if the answer is an integer or a fraction

→ Matching expressions to their exponential, standard, and expanded forms

→ Determining equivalent expressions

16 interactive student slides are included along with 2 quick check printable worksheets. A teacher's guide and answer key are also included.

The Exponent Rules Interactive can be used as an introductory lesson, guided practice, or culminating task.

♥ Love the lesson? Want more 8th Grade Google Interactives? Click below:

Scatter Plot Google Interactive

Scientific Notation Interactive

Rational & Irrational Numbers Interactive

Linear Equations Interactive

Transformation Vocabulary Interactive

♦ Need additional resources for exponent rules?

Exponent Rules Quiz Google Forms

Exponent Rules Self-Checking Mystery Picture

♦ Check out other Google Activities:

Exploring Rotations Partner Challenge Google Slides

Parallel Cut By A Transversal Google Sort

Compare Functions Google Sort

Systems of Equations GRAPHING Interactive Google Drawing Sort

Follow Me to be notified of NEWLY released Google Interactives.

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Licensing Terms :

By purchasing this product, you own a license for one teacher only for personal use in their own classroom. Licenses are non-transferable, unless you have purchased a transferable license, and therefore can not be passed from one teacher to another. If the teacher who purchased this license leaves the classroom or changes schools, the license and materials leave with that teacher. No part of this resource is to be shared with colleagues or used by an entire team, grade level, school or district without purchasing the correct number of licenses.

Copyright Information :

© Moving Towards Mastery

Please note - all material included in this resource belongs to Moving Towards Mastery. By purchasing, you have a license to use the material but you do not own the material. You may not upload any portion of this resource to the internet in any format, including school/personal websites or network drives unless the site is password protected and can only be accessed by students, not other teachers or anyone else on the internet.

Total Pages
16 student slides + 2 worksheets
Answer Key
Included
Teaching Duration
2 days
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Standards

to see state-specific standards (only available in the US).
Write and evaluate numerical expressions involving whole-number exponents.
Know and apply the properties of integer exponents to generate equivalent numerical expressions. For example, 3² × (3⁻⁵) = (3⁻³) = 1/3³ = 1/27.
Explain how the definition of the meaning of rational exponents follows from extending the properties of integer exponents to those values, allowing for a notation for radicals in terms of rational exponents. For example, we define 5 to the 1/3 power to be the cube root of 5 because we want (5 to the 1/3 power)³ = 5 to the (1/3)(3) power to hold, so (5 to the 1/3 power)³ must equal 5.

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