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Learners design and build a device that can take a core sample from a potato. Includes challenge video, leader notes, and handouts. Two supplemental videos are included: 1) NASA's Curiosity rover drills into a rock on Mars and collects a sample and... (View More)

Learners design and build an airbag system that can safely land an egg dropped onto the floor. Includes challenge video, leader notes, and handouts. Two supplemental videos are included: 1) An airbag landing system in action as a NASA rover lands on... (View More)

Learners design, build, and improve a model that mimics gravity-assisted space travel. The design solution enables a steel ball (spacecraft) to roll past a magnet (force exerted by a planet), which will alter its direction in order to hit a... (View More)

Learners design and build a device that can pass above a surface and detect magnetic fields. The video shows kids using the engineering design process, applying a variety of science concepts (e.g., force, magnetic fields, mapping), and learning... (View More)

Learners model how impacts throughout the Moon's history have broken rocks down into a mixture of dust, rocks, and boulders that covers the lunar surface. They consider how the dust will continue to hold a record of human exploration - in the form... (View More)

Audience: Informal education

This is a lesson that applys occultations to Saturn's Moon Enceladus. Learners will establish whether Saturn’s small moon, Enceladus, has an atmosphere, whether that atmosphere is over the entire planet, and what creates Saturn’s E-ring. The... (View More)

This is a lesson about using the light from the star during an occultation event to identify the atmosphere of a planet. Learners will add and subtract light curves (presented as a series of geometrical shapes) to understand how this could occur.... (View More)

Learners will compare known elemental spectra with spectra of Titan and Saturn’s rings from a spectrometer aboard the NASA Cassini spacecraft. They identify the elements visible in the planetary and lunar spectra. The activity is part of Project... (View More)

Learners will use a spectrograph to gather data about light sources. Using the data they’ve collected, students are able to make comparisons between different light sources and make conjectures about the composition of a mystery light source. The... (View More)

Learners will interpret spectral graphs to determine the atmospheric composition of Earth, Venus, and Mars, and then mathematically compare the amount of the greenhouse gas, CO2, on these planets. Students will brainstorm what things, along with... (View More)

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