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Earth in the Future
Conditional Remix & Share Permitted
CC BY-NC-SA
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Our planet is becoming hot. In fact, Earth may be warming faster than ever before. This warming will challenge society throughout the 21st century. How do we cope with rising seas? How will we prepare for more intense hurricanes? How will we adapt to debilitating droughts and heat waves? Scientists are striving to improve predictions of how the environment will change and how it will impact humans. Earth in the Future: Predicting Climate Change and Its Impacts Over the Next Century is designed to provide the state of the art of climate science, the impact of warming on humans, as well as ways we can adapt. Every student will understand the challenges and opportunities of living in the 21st century.

Subject:
Applied Science
Atmospheric Science
Biology
Environmental Science
Geology
Hydrology
Life Science
Oceanography
Physical Science
Material Type:
Full Course
Provider:
Penn State College of Earth and Mineral Sciences
Author:
David Bice
Tim Bralower
Date Added:
10/07/2019
Earth in Motion: Seasons
Read the Fine Print
Educational Use
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This interactive activity from the Adler Planetarium explains the reasons for the seasons. Featured is a game in which Earth must be properly placed in its orbit in order to send Max, the host, to different parts of the world during particular seasons.

Subject:
Atmospheric Science
Physical Science
Material Type:
Activity/Lab
Diagram/Illustration
Interactive
Simulation
Provider:
PBS LearningMedia
Provider Set:
PBS Learning Media: Multimedia Resources for the Classroom and Professional Development
Author:
National Science Foundation
WGBH Educational Foundation
Date Added:
12/17/2005
Solar System!
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Educational Use
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An introduction to our solar system the planets, our Sun and Moon. To begin, students learn about the history and engineering of space travel. They make simple rockets to acquire a basic understanding Newton's third law of motion. They explore energy transfer concepts and use renewable solar energy for cooking. They see how engineers design tools, equipment and spacecraft to go where it is too far and too dangerous for humans. They explore the Earth's water cycle, and gravity as applied to orbiting bodies. They learn the steps of the design process as they create their own models of planetary rovers made of edible parts. Students conduct experiments to examine soil for signs of life, and explore orbit transfers. While studying about the International Space Station, they investigate the realities of living in space. Activities explore low gravity on human muscles, eating in microgravity, and satellite tracking. Finally, students learn about the context of our solar system the universe as they learn about the Hubble Space Telescope, celestial navigation and spectroscopy.

Subject:
Applied Science
Astronomy
Engineering
Physical Science
Material Type:
Full Course
Unit of Study
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
Sun,Moon & Earth
Conditional Remix & Share Permitted
CC BY-SA
Rating
0.0 stars

The solar system is made up of the Sun, the planets that orbit the Sun, their satellites, dwarf planets and many, many small objects, like asteroids and comets. All of these objects move and we can see these movements. We notice the Sun rises in the eastern sky in the morning and sets in the western sky in the evening. We observe different stars in the sky at different times of the year. When ancient people made these observations, they imagined that the sky was actually moving while the Earth stood still. The Moon is a natural satellite of the Earth, meaning that it orbits around the Earth.It is the only place outside of the Earth that humans have ever been! We can often see the Moon on a clear night, but it does appear to change shape during the 29 days it takes to orbit the Earth.

Subject:
Environmental Science
Material Type:
Module
Author:
aditi ghela
Date Added:
08/28/2019
Sea Ice Extension for the Earth as a System Learning Activity
Conditional Remix & Share Permitted
CC BY-NC-SA
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Maps displaying global environmental data (specifically Solar Energy and Average Temperature) through the course of a year are compared in order to understand how the Earth works as a system focusing on Polar Regions. Students then explore data from schools located in Alaska and Antarctica to understand processes that drive the temperature patterns; students then visit the National Snow and Ice Data Center Web site to learn more about the Cryosphere (focusing on Albedo and Sea Ice); finally students visit NOAA's web site looking at data of Sea Ice data anomalies. (Link to the relevant pages in these web sites are listed below.)

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Subject:
Applied Science
Biology
Career and Technical Education
Environmental Science
Environmental Studies
Life Science
Oceanography
Physical Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Author:
Gary Randolph
Date Added:
08/15/2019
Systems Are Everywhere
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CC BY-NC
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The “Systems Are Everywhere” module was originally written for high school science teachers or counselors to use in any setting (in class or in extracurricular programs). However, during field-testing, we found that many elementary and middle school teachers were able to use these lessons successfully with their students. The module is made up of three lessons that serve to foster students’ understanding of systems, systems models, and systems thinking at every level of learning and across many content areas. Blended throughout the lessons are career connections that will introduce students to diverse systems thinkers in STEM, and provide context for how systems approaches are used in real life to address complex problems. The lessons and module can be used as a stand-alone set of activities or can be integrated into any course as an extension or enrichment.

The module begins with students modeling a complex system. Students will brainstorm and sketch the parts and connections of the system, then use an online tool (Loopy) to model the interactions of those parts and connections. Next, students will develop their understanding of systems thinking skills and their application for addressing problems and solutions. Then, students will apply their knowledge and skills to model a system of their choosing. Lastly, they will showcase their skills by creating a student profile and integrating their systems thinking skills into a resume.

Target Audience
This is our introductory module that we recommend teaching before each of our other modules to give students a background in systems and to help them understand the many careers available in STEM. This module can be applied easily to any content area and works best as written for students between 6th and 12th grades but can be adapted for other ages. It works very well when teaching virtually and in-person. If you are looking for an introduction to systems that can be delivered in-person with more kinesthetic activities, please see our Introduction to Systems module. The Intro to Systems module works best with 8-12 grade students, though can be used with some modifications for 6-7th graders. This Systems are Everywhere module can work well for elementary through secondary grades.

Subject:
Life Science
Material Type:
Activity/Lab
Assessment
Homework/Assignment
Lesson
Lesson Plan
Module
Student Guide
Teaching/Learning Strategy
Unit of Study
Author:
Abigail Randall
Baliga Lab
Barbara Steffens
Claudia Ludwig
Eric Muhs
Institute for Systems Biology
Jennifer Eklund
Linnea Stavney
Michael Walker
Rachel Calder
Rebecca A. Howsmon
Stephanie Swegle
Systems Education Experiences
Yuna Shin
Date Added:
01/24/2023
P.1 Energy Flow from Earth's Systems
Unrestricted Use
CC BY
Rating
0.0 stars

How can we design more reliable systems to meet our communities’ energy needs? This unit is designed to introduce students to the concept of energy transfer in a relevant and grounded context: the Texas power crisis of February 2021. Students read articles and wonder about the complex social, environmental, and physical realities that led to such a crisis. They figure out how energy transfers between systems from a generator to our communities, and what makes an energy source reliable. This allows the class to model and explain what happened in Texas at multiple scales, from the electrons in the wires to the power companies making difficult decisions to maintain stability. Students consider engineering tradeoffs, criteria, and constraints inherent in making decisions about our energy systems, and apply them in a culminating task: design a reliable energy solution that meets our communities' needs, as articulated by interviews with friends and family members. The task is designed to give students the tools to speak up in their local and global community for a better energy future, one that aligns with their own values, and those of their families.

Subject:
Physical Science
Material Type:
Activity/Lab
Provider:
OpenSciEd
Author:
Jamie Rumage
OpenSciEd
Date Added:
03/06/2023
The Earth's Heat Budget
Unrestricted Use
CC BY
Rating
0.0 stars

Hands-on laboratory activity that allows students to investigate the effects of distance and angle on the input of solar radiation at Earth's surface, the role played by albedo, the heat capacity of land and water, and how these cause the seasons. Students predict radiative heating based on simple geometry and experiment to test their hypotheses.

Subject:
Applied Science
Career and Technical Education
Environmental Science
Environmental Studies
Oceanography
Physical Science
Physics
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
National Association of Geoscience Teachers
Roy Plotnick
Date Added:
06/19/2012
Sun,Moon & Earth
Conditional Remix & Share Permitted
CC BY-SA
Rating
0.0 stars

The solar system is made up of the Sun, the planets that orbit the Sun, their satellites, dwarf planets and many, many small objects, like asteroids and comets. All of these objects move and we can see these movements. We notice the Sun rises in the eastern sky in the morning and sets in the western sky in the evening. We observe different stars in the sky at different times of the year. When ancient people made these observations, they imagined that the sky was actually moving while the Earth stood still.The Moon is a natural satellite of the Earth, meaning that it orbits around the Earth.It is the only place outside of the Earth that humans have ever been! We can often see the Moon on a clear night, but it does appear to change shape during the 29 days it takes to orbit the Earth.

Subject:
Environmental Science
Material Type:
Lesson Plan
Author:
aditi ghela
Date Added:
08/28/2019
Mountain Maker, Earth Shaker
Read the Fine Print
Educational Use
Rating
0.0 stars

This interactive activity adapted from A Science Odyssey Web site helps you visualize different types of plate tectonic activity and shows the impact this activity has on Earth's surface.

Subject:
Geology
Geoscience
Physical Science
Space Science
Material Type:
Activity/Lab
Interactive
Provider:
PBS LearningMedia
Provider Set:
PBS Learning Media: Multimedia Resources for the Classroom and Professional Development
Author:
National Science Foundation
WGBH Educational Foundation
Date Added:
10/21/2005