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Force & Motion Unit

Rated 5 out of 5, based on 12 reviews
5.0 (12 ratings)
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Laney Lee
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Grade Levels
5th - 8th
Resource Type
Standards
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Laney Lee
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Easel Activities Included
Some resources in this bundle include ready-to-use interactive activities that students can complete on any device.  Easel by TPT is free to use! Learn more.

What educators are saying

My students loved this unit and were very engaged! The reasources are very thorough and easy to understand. Thank you!
My science loving class got into Newton's Laws of Motion, and they LOVED this resource. There are so many activities and things to do, and it does a wonderful job of covering the standards.

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    Description

    Is lesson planning just too much on top of teaching on top of grading on top of classroom management on top of *ahem* living your life?  Get all the resources you need to teach force & motion either in person, hybrid, or virtual with this great value-for-money bundle! 

    These resources will save you time, engage your students, and wow your administrators!

    NGSS Standards:

    MS-PS2-1 Apply Newton’s Third Law to design a solution to a problem involving the motion of two colliding objects.

    MS-PS2-2 Plan an investigation to provide evidence that the change in an object’s motion depends on the sum of the forces on the object and the mass of the object.

    Included Materials:

    Presentations:

    Practice:

    Projects:

    Assessment:

    Planning:

    Topics covered by these resources include:

    • Force
    • Friction
    • Inertia
    • Balanced/Unbalanced Forces
    • Speed & Velocity
    • Newton's Laws
    • Solving for Speed, Distance, & Time

    Who are these resources for?

    These resources can be used by classroom teachers, tutors, and parents of students in grades 6-9. They comprehensively cover the topics mentioned, and provide a variety of practice opportunities to suit learners of all different levels and learning styles. 

    They are ideal for teachers who teach in person, online, or hybrid. Digital versions are included with all resources to make lesson planning a breeze! 

    What's Included?

    Most of the resources in this bundle will be downloaded as a PDF file in color. If a digital file is connected to that resource, as it is in most cases, you will find the link in a large font on page 2 of the PDF. For resources that are printer friendly, the remaining pages of the PDF can be printed and copied. All relevant resources include an answer key at the end of the file. 

    I do not use zip files, instead I package my resources in PDFs as a single document from start to finish. Make sure to scroll through the entire resource if you’re looking for an answer key or alternate version!

    Please take a look at the individual product preview files to see more of the resources included in this bundle.

    How do I teach this unit? 

    Grab the free unit guide that corresponds to this unit by downloading it here in PDF format.

    For questions and support:

    Email me at laneyleeteaches@gmail.com


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    Standards

    to see state-specific standards (only available in the US).
    NGSSMS-PS2-2
    Plan an investigation to provide evidence that the change in an object’s motion depends on the sum of the forces on the object and the mass of the object. Emphasis is on balanced (Newton’s First Law) and unbalanced forces in a system, qualitative comparisons of forces, mass and changes in motion (Newton’s Second Law), frame of reference, and specification of units. Assessment is limited to forces and changes in motion in one-dimension in an inertial reference frame, and to change in one variable at a time. Assessment does not include the use of trigonometry.
    NGSSMS-PS2-1
    Apply Newton’s Third Law to design a solution to a problem involving the motion of two colliding objects. Examples of practical problems could include the impact of collisions between two cars, between a car and stationary objects, and between a meteor and a space vehicle. Assessment is limited to vertical or horizontal interactions in one dimension.

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