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Seventh Grade, Physics Lesson Plans (32 results)

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Lesson Plan Grade: 5th-8th
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"Diver and Lemon shark" © 2004 Hpm~commonswiki What helps SCUBA divers, sharks, fish, and other marine organisms stay in the water column? In this hands-on investigation, students will explore the concepts of buoyancy and mass to create a device to help an action figure stay neutrally buoyant, just like a scuba diver. Read more
NGSS Performance Expectations:
  • 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.
Lesson Plan Grade: 6th-8th
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Do you feel like it is always too loud in your classroom? In this lesson you can find out exactly how loud it is. Using a mobile phone and a sensor app, your students will measure and graph the sound levels in your classroom for different working scenarios. How loud are your students when doing independent work, having a group discussion, or listening to their teacher? Based on your students' data, you will determine as a class which sound levels are ideal for each scenario and create a… Read more
NGSS Performance Expectations:
  • MS-PS4-1. Use mathematical representations to describe a simple model for waves that includes how the amplitude of a wave is related to the energy in a wave.
Lesson Plan Grade: 4th-8th
Students design a device that can track a specific amount of time and indicate when that time has passed with a sound or visual signal. They iterate their designs and prototypes to improve repeatability. Learning Objectives Students will: Design and build a device that indicates when a specific amount of time has passed. Use simple machines in their device. Identify the ways in which energy is stored and transferred in their device. Iterate and improve their designs based… Read more
Lesson Plan Grade: 6th-8th
Teach your students about the engineering design process with this fun lesson plan. They will design and build a ball-launching machine to knock down a target. Optionally, they can enter their designs in the 2020 Engineering Challenge for a chance to win a cash prize for your school! Teachers, note that elementary school and high school versions of this lesson plan are also available. Read more
NGSS Performance Expectations:
  • MS-ETS1-2. Evaluate competing design solutions using a systematic process to determine how well they meet the criteria and constraints of the problem.
  • MS-ETS1-4. Develop a model to generate data for iterative testing and modification of a proposed object, tool, or process such that an optimal design can be achieved.
  • MS-PS3-5. Construct, use, and present arguments to support the claim that when the kinetic energy of an object changes, energy is transferred to or from the object.
Lesson Plan Grade: 6th-8th
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(Image credit: by ackab1, via Flickr. Creative Commons). Students will discover the science behind how a drone works, explore how drones are used in agriculture, and program and operate a drone for the purpose of monitoring grazing sheep. Read more
NGSS Performance Expectations:
  • MS-ETS1-1. Define the criteria and constraints of a design problem with sufficient precision to ensure a successful solution, taking into account relevant scientific principles and potential impacts on people and the natural environment that may limit possible solutions.
Lesson Plan Grade: 6th-8th
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How was magnetism responsible for the destruction of dozens of ships during World War II? In this lesson, your students will explore the concepts of magnetic fields and forces using the example of World War II magnetic mines. With the help of a magnetometer, a smartphone, and a sensor app, students will investigate what factors affect the strength of a magnetic field. Then they will use their knowledge to try to discover the location of hidden "mines" and investigate how they can cloak a… Read more
NGSS Performance Expectations:
  • MS-PS2-3. Ask questions about data to determine the factors that affect the strength of electric and magnetic forces.
  • MS-PS2-5. Conduct an investigation and evaluate the experimental design to provide evidence that fields exist between objects exerting forces on each other even though the objects are not in contact.
Lesson Plan Grade: 6th-8th
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Learn about potential and kinetic energy the fun way—by launching ping pong balls across the classroom with a catapult! Read more
NGSS Performance Expectations:
  • MS-PS3-5. Construct, use, and present arguments to support the claim that when the kinetic energy of an object changes, energy is transferred to or from the object.
Lesson Plan Grade: 4th-7th
Learners explore the properties of materials by designing a barrier that will protect a satellite from colliding objects. They test out multiple combinations of materials and collect data on the results to determine which materials are the most effective at shielding the satellites from the hazards of space debris. Learning Objectives Students will: Design a barrier that can protect the satellite from high-velocity impacts with space debris. Explore design considerations based on… Read more
Lesson Plan Grade: 6th-8th
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This activity demonstrates how potential energy (PE) can be converted to kinetic energy (KE) and back again. Given a pendulum height, students calculate and predict how fast the pendulum will swing by understanding conservation of energy and using the equations for PE and KE. The equations are justified as students experimentally measure the speed of the pendulum and compare theory with reality.Engineering Connection Mechanical engineers design a wide range of consumer and… Read more
NGSS Performance Expectations:
  • MS-PS3-5. Construct, use, and present arguments to support the claim that when the kinetic energy of an object changes, energy is transferred to or from the object.
  • MS-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.
Lesson Plan Grade: 6th-8th
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Students use water balloons and a length of string to understand how the force of gravity between two objects and the velocity of a spacecraft can balance to form an orbit. They see that when the velocity becomes too great for gravity to hold the spacecraft in orbit, the object escapes the orbit and travels further away from the planet.Engineering Connection Engineers and scientists make amazingly precise calculations so that a spacecraft's journey is timed exactly to reach… Read more
NGSS Performance Expectations:
  • MS-ESS1-2. Develop and use a model to describe the role of gravity in the motions within galaxies and the solar system.
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