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Engineering and technology  
Physical sciences  
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Demonstration  
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Learning Time:
45 to 60 minutes  
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The difference between mass and weight are defined and described in this student-lead NASA eClips segment. The resource also includes a lesson that contains a pre- and post-test, and an activity using the Frayer model. The Real World series of NASA... (View More)

Keywords: Gravity; Force; Matter; Speed; Galileo
Audience: Elementary school
Materials Cost: Free

The difference between heat and temperature is explained through this student-lead NASA eClips segment, along with a lesson which includes a pre- and post-test, and an activity using the Frayer model. The Real World series of NASA eClips™ connects... (View More)

Audience: Middle school
Materials Cost: Free

Students will test various materials to determine if any can shield their "magnetometer" (compass) from an external magnetic field using their own experimental design. If no suitable material is available, they will devise another method to protect... (View More)

Students are tasked with virtually designing a spacecraft to withstand the harsh environment of the Van Allen Radiation belts- the location of many communication, GPS and weather satellites. The details of the challenge, along with videos on... (View More)

Audience: Informal education
Materials Cost: Free

Students will learn about black holes through reading a NASA press release and viewing a NASA eClips™ video segment. Then students will use tables and mathematical expressions to compare black hole sizes and temperatures. Common Core State... (View More)

Keywords: Black holes; Supernova
Audience: Middle school
Materials Cost: Free

Students will learn about NASA's Fermi satellite and gamma ray sources through reading a NASA press release. They will also learn about gamma rays and the electromagnetic spectrum by viewing a NASA eClips™ video segment. Then, students will use... (View More)

Audience: Middle school
Materials Cost: Free

This is a lesson about magnetism in solar flares. Learners will map magnetic fields around bar magnets and investigate how this configuration relates to magnetic fields of sunspots. This activity requires compasses, bar magnets, and a equipment for... (View More)

Learners will build a spectroscope and use it to observe various types of lights. This activity requires spectroscope kits, diffraction gratings and fluorescent and incandescent light sources. The kits are available for purchase in packs of 25 from... (View More)

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