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Matter & Energy - Reading Comprehension Worksheets

Rated 4 out of 5, based on 4 reviews
4.0 (4 ratings)
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Laney Lee
3k Followers
Grade Levels
6th - 9th
Standards
Formats Included
  • PDF
  • Google Apps™
Pages
4 pages
$2.50
$2.50
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Laney Lee
3k 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.
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Description

Do your students struggle with scientific literacy? Do you find yourself at a loss for how to promote vocabulary retention? Are waning attention spans becoming a larger and larger problem in your classroom from year to year? If you answered yes to any of those questions then this resource is for you.

I believe that teaching literacy is the job of every teacher, not just the heroes in English and Language Arts. And the only way we can help our students improve is by modeling and giving them chances to practice. Read out loud together, annotate, and spark classroom discussion today!

I created this line of guided reading resources to help teachers, parents, and students by providing a detailed yet easy to read (avg. reading level: grades 6-8) reference on a variety of topics. The questions that accompany the text are designed to be rigorous and require students to predict, reflect, connect, and think critically about the information being presented.

Let's get our students reading, writing, and integrating vocabulary with this resource that is compatible with multiple styles of teaching. Your purchase includes both PDF and digital copies that are perfect for pre-reading, homework and review, or even sending to absent students.

Topics covered in this resource include:

  • what is matter?
  • Properties of matter
  • What is energy
  • Law of Conservation of Energy
  • Idea that energy can be transformed/saved

Who is this resource for?

This resource can be used by classroom teachers, tutors, and parents of students in grades 6-9. It comprehensively covers the mentioned topics, and includes several comprehension and extension questions that will lock in learning.

How Can I Use this Resource?

  • Emergency Sub Plans
  • An independent work station in a set of stations
  • Flipped Classroom pre-reading
  • Whole or small group opportunity to model and teach Close Reading strategies and annotation
  • Differentiation – Assign this reading as reteaching for students who have yet to show mastery.
  • Homework 
  • Creation of Independent Work Packet for students who are not able to be present for direct instruction.
  • Extension activity for early finishers or for students who show a special interest in the topic
  • Use as a square on a Choice Board
  • Interactive Notebooks: Print 2 pages in one and cut apart. Glue mini pages into notebooks with room for annotations on the side
  • Interactive Notebooks: Print entire PDF as a mini booklet and add to notebooks using these simple instructions.

What's Included?

Purchase includes a printable PDF file in color with answer key. On page 2 of this resource you will find a link to a student friendly Google Slide version of this file. You will be able to copy this file and use it with Google Classroom or any other paperless initiative.

Please take a look at the preview file to see more of this resource.

This is an Easel Resource Too

We know you're busy, so this resource has already been prepped for use in Easel by TPT. That means that in the Easel Activity, all non-student pages have been removed and answer boxes have been added where they're needed. You can assign this resource to your students as a fillable PDF just seconds after purchasing, with no extra steps on your end.

NEW! Audio Recording!
In an effort to further support scientific literacy, this resource has been updated with a link to a read aloud version of the text. This feature is not only great for differentiation, but also provides an abundance of benefits for students. Students who are read to have better listening comprehension, longer attention spans, larger vocabulary, and improved reading fluency.

After downloading this resource, share the included audio link with students, their families, or play it aloud in class!

What's Next?

If you enjoy this resource, consider checking out some of my otherguided readings</a>! Orsubmit a request for a topic you'd like to see in a future product.

More questions?

Email me at laneyleeteaches@gmail.com

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Total Pages
4 pages
Answer Key
Included
Teaching Duration
1 hour
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Standards

to see state-specific standards (only available in the US).
NGSSMS-PS3-4
Plan an investigation to determine the relationships among the energy transferred, the type of matter, the mass, and the change in the average kinetic energy of the particles as measured by the temperature of the sample. Examples of experiments could include comparing final water temperatures after different masses of ice melted in the same volume of water with the same initial temperature, the temperature change of samples of different materials with the same mass as they cool or heat in the environment, or the same material with different masses when a specific amount of energy is added. Assessment does not include calculating the total amount of thermal energy transferred.
NGSSMS-PS2-4
Construct and present arguments using evidence to support the claim that gravitational interactions are attractive and depend on the masses of interacting objects. Examples of evidence for arguments could include data generated from simulations or digital tools; and charts displaying mass, strength of interaction, distance from the Sun, and orbital periods of objects within the solar system. Assessment does not include Newton’s Law of Gravitation or Kepler’s Laws.
NGSSMS-PS3-1
Construct and interpret graphical displays of data to describe the relationships of kinetic energy to the mass of an object and to the speed of an object. Emphasis is on descriptive relationships between kinetic energy and mass separately from kinetic energy and speed. Examples could include riding a bicycle at different speeds, rolling different sizes of rocks downhill, and getting hit by a wiffle ball versus a tennis ball.

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