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Snap Circuits Electricity Bundle - Units 1 and 2

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Teacher Toy Shop
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Grade Levels
6th - 9th, Homeschool
Standards
Formats Included
  • Zip
Pages
100 pages
$20.99
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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.

Products in this Bundle (2)

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    Description

    Embark on an educational adventure through electricity with this comprehensive resource - Snap Circuits Electricity Bundle - Units 1 and 2. This bundle features a total of sixteen interactive Snap Circuit experiments and lessons, providing complete and engaging electricity units for both school and home use. Written in student-friendly language and fully illustrated, these lessons and experiments foster a love for science and are designed to align seamlessly with your physical science curriculum.

    Key Features:

    1. Complete Electricity Units:

    • Guided Questions: Each lesson incorporates guided questions to facilitate a deeper understanding of electricity concepts through hands-on Snap Circuit experiments.
    • Student-Friendly Language: Written in a language accessible to young learners, these lessons are interactive and engaging, making the complex world of electricity easy to comprehend.
    • Illustrated Lessons: Enhance clarity and engagement with fully illustrated step-by-step lessons that cover a wide range of electricity topics.

    2. Topics Covered:

    • Electricity Fundamentals: Explore electric current, open and closed circuits, potential and kinetic energy, voltage, and more.
    • Advanced Concepts: Delve into advanced topics such as Ohm's Law, watts, polarity, and the role of conductors, semiconductors, and resistors in electrical systems.
    • Integration with Technology: Connect electricity to technology by exploring binary code, schematic diagrams, and the application of electricity in Rube Goldberg machines.

    3. Supplementary Materials:

    • Hands-on Vocabulary Activities: Reinforce learning with engaging hands-on vocabulary activities that complement the lessons.
    • Assessments: Evaluate student understanding with assessments designed to measure comprehension of electricity concepts covered in the bundle.

    4. Snap Circuits Compatibility:

    • Kit Requirements: This resource is intended for use with Snap Circuits kits, including Snap Circuits Junior Kit Model SC-100, Snap Circuits Classic model SC-300, Snap Circuits Pro, Snap Circuits Extreme, Snap Circuits Light, Snap Circuits Training Programs SC-300R, 500R, and 750R.
    • Measurement Tools: For Unit 2, students will need a Snap Circuits 6SCM5 5V-1mA-1A Meter to measure voltage and amps. Details for purchasing this meter are provided.

    5. Distance Learning Friendly:

    • Versatile Learning Environments: Whether in the classroom or at home, this bundle is ideal for both traditional and remote learning, making it a valuable resource for educators and students alike.

    6. Authorized by Elenco Electronics Inc:

    • Official Approval: This product is authorized by Elenco Electronics Inc, the company that manufactures Snap Circuits, ensuring accuracy and alignment with the Snap Circuits curriculum.

    Ignite a passion for physical science and electricity with this Snap Circuits Electricity Bundle. Download this comprehensive resource today and empower your students to become enthusiastic explorers of the fascinating world of electricity!

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    Total Pages
    100 pages
    Answer Key
    Included
    Teaching Duration
    N/A
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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.
    NGSS4-PS3-4
    Apply scientific ideas to design, test, and refine a device that converts energy from one form to another. Examples of devices could include electric circuits that convert electrical energy into motion energy of a vehicle, light, or sound; and, a passive solar heater that converts light into heat. Examples of constraints could include the materials, cost, or time to design the device. Devices should be limited to those that convert motion energy to electric energy or use stored energy to cause motion or produce light or sound.
    NGSSHS-PS3-2
    Develop and use models to illustrate that energy at the macroscopic scale can be accounted for as a combination of energy associated with the motion of particles (objects) and energy associated with the relative position of particles (objects). Examples of phenomena at the macroscopic scale could include the conversion of kinetic energy to thermal energy, the energy stored due to position of an object above the earth, and the energy stored between two electrically-charged plates. Examples of models could include diagrams, drawings, descriptions, and computer simulations.
    NGSSMS-PS3-2
    Develop a model to describe that when the arrangement of objects interacting at a distance changes, different amounts of potential energy are stored in the system. Emphasis is on relative amounts of potential energy, not on calculations of potential energy. Examples of objects within systems interacting at varying distances could include: the Earth and either a roller coaster cart at varying positions on a hill or objects at varying heights on shelves, changing the direction/orientation of a magnet, and a balloon with static electrical charge being brought closer to a classmate’s hair. Examples of models could include representations, diagrams, pictures, and written descriptions of systems. Assessment is limited to two objects and electric, magnetic, and gravitational interactions.
    NGSSHS-PS3-1
    Create a computational model to calculate the change in the energy of one component in a system when the change in energy of the other component(s) and energy flows in and out of the system are known. Emphasis is on explaining the meaning of mathematical expressions used in the model. Assessment is limited to basic algebraic expressions or computations; to systems of two or three components; and to thermal energy, kinetic energy, and/or the energies in gravitational, magnetic, or electric fields.

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