Western Mining History presents a gallery of colorized photos of historical mining …
Western Mining History presents a gallery of colorized photos of historical mining scenes from the western US and Colorado. Western Mining History is an historical site that provides databases, information on mining, mining towns, gold and Photos and maps of the western United States. This photo gallery provide an excellent collection of primary sources for historical analysis in the classroom. Consider becoming a member or making a donation to help further the work of the site. Suggested use: Students might compare the color image to black and white versions on other parts of the Western Mining History site to discuss how color affects our interpretation and response to the image.
Working with data, students develop 3-D understandings of Earth structures using inference …
Working with data, students develop 3-D understandings of Earth structures using inference to construct a block diagram from a collection of 2-D information.
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X-ray diffraction is a quick and valuable tool for identifying minerals. Minerals …
X-ray diffraction is a quick and valuable tool for identifying minerals. Minerals are an integral portion of our everyday life, in addition to composing our planet! They help bring electricity into our homes and remove our bathtub rings. In this lab, students analyze the X-ray diffraction patterns of three household cleansers, Ajax, White Magic, and Soft Scrub, in order to identify the abrasive minerals in each.
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Dinosaur Journey is a part of the Museums of Western Colorado. Dinosaur …
Dinosaur Journey is a part of the Museums of Western Colorado. Dinosaur Journey director of Paleontology Dr. Julia McHugh talks about amphibians. Ever noticed the large red rock base of Independence Monument?! It is from the Chinle formation in the Triassic period. That's the age of the rock these amazing amphbian creatures were discovered.
While big data infiltrates all walks of life, most firms have not …
While big data infiltrates all walks of life, most firms have not changed sufficiently to meet the challenges that come with it. In this course, you will learn how to develop a big data strategy, transform your business model and your organization.
This course will enable professionals to take their organization and their own career to the next level, regardless of their background and position.
Professionals will learn how to be in charge of big data instead of being subject to it. In particular, they will become familiar with tools to:
assess their current situation regarding potential big data-induced changes of a disruptive nature, identify their options for successfully integrating big data in their strategy, business model and organization, or if not possible, how to exit quickly with as little loss as possible, and strengthen their own position and that of their organization in our digitalized knowledge economy The course will build on the concepts of product life cycles, the business model canvas, organizational theory and digitalized management jobs (such as Chief Digital Officer or Chief Informatics Officer) to help you find the best way to deal with and benefit from big data induced changes.
This is a collection of five short videos that show how climate …
This is a collection of five short videos that show how climate change is affecting fishing, native populations and access for the oil and gas industry in the Arctic. The videos include personal reflections by writers Andrew C. Revkin and Simon Romero, scientists, and residents about their experience of the impacts of the climate change in the Arctic.
In this classroom activity, middle school students examine the wide-ranging sizes of …
In this classroom activity, middle school students examine the wide-ranging sizes of dinosaurs. The activity opens with background information for teachers about the enormous range of dinosaur sizes. In a classroom discussion, students describe the size of some dinosaurs. Then, working from an existing grid, students create either a to-scale drawing of a Tyrannosaurus head or a life-size drawing of a Protoceratops.
This activity features a problem set designed to make students think carefully …
This activity features a problem set designed to make students think carefully about the link between phase diagrams and textures.
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In this activity students work through a binary eutectic phase diagram in …
In this activity students work through a binary eutectic phase diagram in small groups and try to determine a set of generalizations that explain the behavior of such systems (e.g., "the first liquid produced upon heating is always the eutectic composition").
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Students act as if they are biological engineers following the steps of …
Students act as if they are biological engineers following the steps of the engineering design process to design and create protein models to replace the defective proteins in a child’s body. Jumping off from a basic understanding of DNA and its transcription and translation processes, students learn about the many different proteins types and what happens if protein mutations occur. Then they focus on structural, transport and defense proteins during three challenges posed by the R&D; bio-engineering hypothetical scenario. Using common classroom supplies such as paper, tape and craft sticks, student pairs design, sketch, build, test and improve their own protein models to meet specific functional requirements: to strengthen bones (collagen), to capture oxygen molecules (hemoglobin) and to capture bacteria (antibody). By designing and testing physical models to accomplish certain functional requirements, students come to understand the relationship between protein structure and function. They graph and analyze the class data, then share and compare results across all teams to determine which models were the most successful. Includes a quiz, three worksheets and a reference sheet.
Students learn how to manipulate the behavior of water by using biochar—a …
Students learn how to manipulate the behavior of water by using biochar—a soil amendment used to improve soil functions. As a fluid, water interacts with soil in a variety of ways. It may drain though a soil’s non-solid states, or its “pores”; lay above the soil; or move across cell membranes via osmosis. In this experiment, students solve the specific problem of standing water by researching, designing, and engineering solutions that enable water to drain faster. This activity is designed for students to explore how biochar helps soils to act as “sponges” in order to retain more water.
There is life all around us! Look out a window, and we …
There is life all around us! Look out a window, and we see a variety of living things. Even in the middle of a big city, plants grow in between cracks in the sidewalk. All that life is called Biodiversity. Check out the Natural Resources Intern video to learn how high school students are improving biodiversity on an Eastern Oregon ranch. Then, in the Discovery Challenge video, investigate biodiversity at two different sites by collecting data at each sites. With your data, you will be able to compare the biodiversity at the two sites.
This lesson introduces NGSS standards, and those standards are listed in the lesson and is part of the Explore Science Club series, an online Career Connected Learning program developed by the Greater Oregon STEM Hub. To learn more find us at: www.go-stem.org.
Students explore the biosphere's environments and ecosystems, learning along the way about …
Students explore the biosphere's environments and ecosystems, learning along the way about the plants, animals, resources and natural cycles of our planet. Over the course of lessons 2-6, students use their growing understanding of various environments and the engineering design process to design and create their own model biodome ecosystems - exploring energy and nutrient flows, basic needs of plants and animals, and decomposers. Students learn about food chains and food webs. They are introduced to the roles of the water, carbon and nitrogen cycles. They test the effects of photosynthesis and transpiration. Students are introduced to animal classifications and interactions, including carnivore, herbivore, omnivore, predator and prey. They learn about biomimicry and how engineers often imitate nature in the design of new products. As everyday applications are interwoven into the lessons, students consider why a solid understanding of one's environment and the interdependence within ecosystems can inform the choices we make and the way we engineer our communities.
In this multi-day activity, students explore environments, ecosystems, energy flow and organism …
In this multi-day activity, students explore environments, ecosystems, energy flow and organism interactions by creating a scale model biodome, following the steps of the engineering design process. The Procedure section provides activity instructions for Biodomes unit, lessons 2-6, as students work through Parts 1-6 to develop their model biodome. Subjects include energy flow and food chains, basic needs of plants and animals, and the importance of decomposers. Students consider why a solid understanding of one's environment and the interdependence of an ecosystem can inform the choices we make and the way we engineer our own communities. This activity can be conducted as either a very structured or open-ended design.
This exercise contains two interrelated modules that introduce students to modern biological …
This exercise contains two interrelated modules that introduce students to modern biological techniques in the area of Bioinformatics, which is the application of computer technology to the management of biological information. The need for Bioinformatics has arisen from the recent explosion of publicly available genomic information, such as that resulting from the Human Genome Project.
How this course is intended to be used: This course is set …
How this course is intended to be used: This course is set up to be used as either fully online, face-to-face (f2f), or hybrid. Note that the course outcomes and some assessments have variations available for each type of course (e.g., Public Awareness Campaign, Dancing Skeletons Essay & Discussion)
Resources for this course: OER resources: The majority of materials used in this course are OER and can be found via this page (under Course Modules).
Paid resources: Only one small textbook is suggested for the course, the ethnography Dancing Skeletons: Life and Death in West Africa by Katharine Dettwyler (ISBN-10: 088133748X). It's approximately $13.00 new and can be found for approximately $5.00 used. It's used for the Unit 3 assessment, Dancing Skeletons Essay & Discussion. We think that it's an integral part of the course, due to its focus on human biology and biocultural/environmental interactions. It also provides an excellent portrayal of an anthropologist's experience in the field. If you require additional or alternate textbooks, we have put together a list of texts available for around $30.
Explanation of approach: As you peruse the reading material in the course module pages you might find that they contain less detail than what you would see in a "normal" textbook. This is intentional. One thing we find incredible about higher education is that the student often reads the textbook only to go into class and have the professor lecture for two hours on the exact same material. Because of this repetition of the material, students often become exasperated and either stop reading the material or stop paying attention in class. We've also found that students in the introductory anthropology courses frequently struggle with picking out the basic concepts from among the myriad of material from the textbook. We think that students in introductory anthropology courses such as this one, most of whom are not going to be anthropology majors, should read the basic information outside of class. This allows the instructor to focus on providing more explanatory details and help students work through critical thinking about the material in class. Therefore, the readings in the course modules have the basic information. Through in-class activities, discussions, and homework assignments, the job of the instructor is to help students move deeper into and synthesize the material.
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