Produce light by bombarding atoms with electrons. See how the characteristic spectra …
Produce light by bombarding atoms with electrons. See how the characteristic spectra of different elements are produced, and configure your own element's energy states to produce light of different colors.
Meet the Nervous System Engineers—a team of scientists at the Ashton Group …
Meet the Nervous System Engineers—a team of scientists at the Ashton Group who make nervous system tissue to find treatments for nervous system diseases and injuries.
Resources available for learning about this lab include: • Interactive cards designed to introduce students to scientists in a more personal way • A video with a personal story that explains why the lab's research matters in real life • Questions to consider that will spark connection, reflection, and conversation • An interactive video experience where you can ask questions of scientists in the lab and learn about their research • An inquiry-based activity that focuses on doing science, using some of the same science practices that the lab uses • An educator guide with information about standards alignment, curriculum connections, and tips for using the media resources
These resources are part of Meet the Lab, a collection of educational resources for middle school science classrooms.
This course explores the social relevance of neuroscience, considering how emerging areas …
This course explores the social relevance of neuroscience, considering how emerging areas of brain research at once reflect and reshape social attitudes and agendas. Topics include brain imaging and popular media; neuroscience of empathy, trust, and moral reasoning; new fields of neuroeconomics and neuromarketing; ethical implications of neurotechnologies such as cognitive enhancement pharmaceuticals; neuroscience in the courtroom; and neuroscientific recasting of social problems such as addiction and violence. Guest lectures by neuroscientists, class discussion, and weekly readings in neuroscience, popular media, and science studies.
The human cost of World War I was enormous. The prolonged trench …
The human cost of World War I was enormous. The prolonged trench warfare ended the lives of 1.8 million Germans, 1.7 million Russians, 1.4 million French, 1.2 million Austro-Hungarians, and over 900,000 British. 112,000 American troops also died, mostly from disease. Many of those who didn't die were left with horrible wounds. Here, plaster casts of the mutilated faces of soldiers wounded in battle are shown next to their reconstructions, carried out with the aid of new prosthetic devices. They represent one legacy of the First World War and the imperfect attempts to contend with its gruesome effects.
In this lesson designed to enhance literacy skills, an early astronaut's experiences …
In this lesson designed to enhance literacy skills, an early astronaut's experiences teach students that Newton's third law of motion—for every action, there is an equal and opposite reaction—applies both on Earth and in outer space.
Molecular Workbench (MW) is powerful, award-winning software that provides visual, interactive computational …
Molecular Workbench (MW) is powerful, award-winning software that provides visual, interactive computational experiments for teaching and learning science. These simulations are HTML5 and work well on non-java based platforms.
In this video segment adapted from NOVA scienceNOW, MIT engineer Dava Newman …
In this video segment adapted from NOVA scienceNOW, MIT engineer Dava Newman is working to replace today's bulky, inflated space suits with a radical, sleek design that may one day allow astronauts to walk easily on Mars.
Nitrogen, one of the most abundant elements in the universe, is essential …
Nitrogen, one of the most abundant elements in the universe, is essential to life. This interactive activity adapted from the University of Alberta provides an overview of the nitrogen cycle.
This capstone course is a group design project involving integration of nuclear …
This capstone course is a group design project involving integration of nuclear physics, particle transport, control, heat transfer, safety, instrumentation, materials, environmental impact, and economic optimization. It provides opportunities to synthesize knowledge acquired in nuclear and non-nuclear subjects and apply this knowledge to practical problems of current interest in nuclear applications design. Each year, the class takes on a different design project; this year, the project is a power plant design that ties together the creation of emission-free electricity with carbon sequestration and fossil fuel displacement. Students taking Graduate / Professional version complete additional assignments. This course is an elective subject in MIT’s underGraduate / Professional Energy Studies Minor. This Institute-wide program complements the deep expertise obtained in any major with a broad understanding of the interlinked realms of science, technology, and social sciences as they relate to energy and associated environmental challenges.
This capstone course is a group design project involving integration of nuclear …
This capstone course is a group design project involving integration of nuclear physics, particle transport, control, heat transfer, safety, instrumentation, materials, environmental impact, and economic optimization. It provides opportunities to synthesize knowledge acquired in nuclear and non-nuclear subjects and apply this knowledge to practical problems of current interest in nuclear applications design. Each year, the class takes on a different design project; this year, the project is a power plant design that ties together the creation of emission-free electricity with carbon sequestration and fossil fuel displacement. Students taking graduate version complete additional assignments.This course is an elective subject in MIT's undergraduate Energy Studies Minor. This Institute-wide program complements the deep expertise obtained in any major with a broad understanding of the interlinked realms of science, technology, and social sciences as they relate to energy and associated environmental challenges.
In this lesson designed to enhance literacy skills, students examine the nutritional …
In this lesson designed to enhance literacy skills, students examine the nutritional content of different foods and learn about the health benefits and risks associated with the food choices they make.
This series of 5 high-quality, standards-aligned, inquiry-based lessons have been field-tested by …
This series of 5 high-quality, standards-aligned, inquiry-based lessons have been field-tested by the 4K students of Wequiock Children's Center for Environmental Science, their teacher and educational assistant. These lessons encourage students to use natural areas around their school as they improve their science and engineering skills as part of a unit on observing changes. Created as a part of a WISELearn OER Innovation project, Connect, Explore, and Engage: Using the Environment as the Context for Science Learning was a collaboration of the Wequiock Children's Center for Environmental Science and the Wisconsin Green Schools Network. One of the goals of the project was to create standards-aligned lessons that utilize the outdoor spaces of the school . These lessons were created to take place during late winter.
Learn how snowfall happening later in the year than usual is impacting …
Learn how snowfall happening later in the year than usual is impacting cultural practices in this video segment about climate change adapted from the College of Menominee Nation.
In this video segment adapted from the College of Menominee Nation, tribal …
In this video segment adapted from the College of Menominee Nation, tribal members observe lower water levels in lakes and streams and call for global, collaborative solutions to address climate change.
The students will learn about the changing environment through study and observation. …
The students will learn about the changing environment through study and observation. They will reflect on these changes in the environment and create their own landscape and habitat. This is the second lesson in "Observing connections," a series of three in which students are creating art based on their observations.
This math meets ecology lesson provides hands-on experiences with mixing oil and …
This math meets ecology lesson provides hands-on experiences with mixing oil and water, provides surface area information about the 2010 oil spill in the Gulf of Mexico, and gives learners opportunities to estimate small oil spills of their own making. This lesson guide includes questions for learners, assessment options, extensions, and reflection questions.
This curriculum guide contains pacing, instruction, prior knowledge, and assessment guidance to …
This curriculum guide contains pacing, instruction, prior knowledge, and assessment guidance to accompany the OpenSciEd unit 7.5 Ecosystem Dynamics and Biodiversity. For schools who use Fisher and Frey's The Teacher Clarity Playbook, you'll find student-friendly learning intentions and success criteria for every lesson (indicated by a number and letter, ie: 4b), drawn from the OSE three dimensional performance expectations. These can be posted on slides or boards in classrooms to make learning visible for students and help design assessment criteria.
Our Coast, Our Future (OCOF) is a collaborative, user-driven project focused on …
Our Coast, Our Future (OCOF) is a collaborative, user-driven project focused on providing coastal California resource managers and land use planners locally relevant, online maps and tools to help understand, visualize, and anticipate vulnerabilities to sea level rise and storms.
Michael Yantsos contracted AIDS through intravenous drug use while in prison in …
Michael Yantsos contracted AIDS through intravenous drug use while in prison in 1983. Yantsos was one of thousands who became infected before information about the disease or adequate treatment was available. As a result, Yantsos, like most Americans, knew next to nothing about the disease when AIDS struck during the early 1980's. Many associated the disease with gay men, who were its first victims, but the epidemic soon spread to other populations – first to intravenous drug users, and then to heterosexuals. Reagan era cuts in drug treatment programs and the "war" on drugs that pushed thousands of addicts into prison also contributed to the disease's spread.
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