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Can It Support You? No Bones about It!
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After completing the associated lesson and its first associated activity, students are familiar with the 20 major bones in the human body knowing their locations and relative densities. When those bones break, lose their densities or are destroyed, we look to biomedical engineers to provide replacements. In this activity, student pairs are challenged to choose materials and create prototypes that could replace specific bones. They follow the steps of the engineering design process, researching, brainstorming, prototyping and testing to find bone replacement solutions. Specifically, they focus on identifying substances that when combined into a creative design might provide the same density (and thus strength and support) as their natural counterparts. After iterations to improve their designs, they present their bone alternative solutions to the rest of the class. They refer to the measured and calculated densities for fabricated human bones calculated in the previous activity, and conduct Internet research to learn the densities of given fabrication materials (or measure/calculate those densities if not found online).

Subject:
Anatomy/Physiology
Applied Science
Engineering
Life Science
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
10/14/2015
Capacity to Connect: Supporting Students’ Mental Health and Wellness
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Capacity to Connect: Supporting Students’ Mental Health and Wellness includes a facilitator’s guide with handouts and a PowerPoint presentation. This adaptable training resource covers foundational mental health and wellness knowledge for post-secondary faculty and staff and ways to support students in distress. It can be used for two-hour online or in-person training or for self-study.

Subject:
Psychology
Social Science
Material Type:
Textbook
Provider:
BCcampus
Author:
Albert Seinen
Barbara Johnston
Faye Shedletzky
Gemma Armstrong
Jewell Gillies
Liz Warwick
Michelle Daoust
Ycha Gil
Date Added:
07/28/2021
Capital Markets Online Course for Teachers and Students
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CC BY-NC-ND
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Capital markets include the stock and bond markets, and this is where businesses turn for funding when they need investors. In this course, students will learn how capital markets keep the economy moving and how they provide opportunities for businesses, entrepreneurs and investors to achieve their goals.

Subject:
Economics
Social Science
Material Type:
Full Course
Provider:
Federal Reserve Bank of St. Louis
Provider Set:
Economic Lowdown Lessons
Date Added:
06/14/2023
Carbon Prices and Climate Change Educator Guide
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CC BY-NC-SA
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Carbon pricing, including cap-and-trade and carbon taxes, is one tool in the toolbox governments have to reduce the impacts of climate change. What kind of a tool is it? After an introduction to carbon pricing, students use an online simulator to investigate multiple pathways to a cooler future.

This Guide for Educators was developed by the MIT Environmental Solutions Initiative as an extension of our TILclimate (Today I Learned: Climate) podcast, to make it easier for you to teach climate change, earth science, and energy topics in the classroom. It is an extension of the TILclimate episode "TIL about carbon pricing."

Subject:
Atmospheric Science
Earth and Space Science
Material Type:
Lesson Plan
Provider:
MIT
Provider Set:
TILclimate Educator Hub
Date Added:
05/02/2023
Cards, Cars, and Currency Online Course for Teachers and Students
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Cards, Cars and Currency is a set of personal finance programs that encourages participants to learn about three areas of personal finance: credit cards, debit cards and purchasing a car. Cards, Cars and Currency includes five individual programs that can be used together or individually to enhance personal finance learning.

Subject:
Economics
Social Science
Material Type:
Full Course
Provider:
Federal Reserve Bank of St. Louis
Provider Set:
Economic Lowdown Lessons
Date Added:
06/14/2023
Cell Membrane Structure and Function
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Students learn about the different structures that comprise cell membranes, fulfilling part of the Research and Revise stages of the legacy cycle. They view online animations of cell membrane dynamics (links provided). Then they observe three teacher demonstrations that illustrate diffusion and osmosis concepts, as well as the effect of movement through a semi-permeable membrane using Lugol's solution.

Subject:
Applied Science
Biology
Engineering
Life Science
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
Center for Advanced Language Proficiency Education and Research (CALPER)
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The Center for Advanced Language Proficiency Education and Research (CALPER) at the University of Pennsylvania is one of the fifteen Language Resource Centers established under Title VI of the U.S. Department of Education. According to the website, CALPER's particular focus is to improve the environment of advanced-level foreign language teaching and learning and assessment. The center thus far has developed innovative teaching materials, created online professional development resources, offered workshops for educators, and more.

Subject:
Arts and Humanities
Languages
World Languages
Material Type:
Teaching/Learning Strategy
Provider:
Center for Advanced Language Proficiency Education and Research (CALPER)
Date Added:
03/29/2023
Center for Open Educational Resources and Language Learning (COERLL)
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COERLL produces online language learning materials (for example language courses, reference grammars, assessment tools, and corpora) for teachers to adopt, adapt, modify, and share, and also provides professional development tools for teachers. You can browse materials on the COERLL website.

Subject:
Arts and Humanities
Languages
Material Type:
Activity/Lab
Assessment
Reading
Textbook
Unit of Study
Provider:
Center for Open Educational Resources and Language Learning (COERLL)
Date Added:
03/29/2023
Characterizing Plate Boundaries
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To prepare for this exercise students read about the processes that operate at plate boundaries and how they are related to the distinct patterns of seismicity, volcanism, surface elevations (e.g., ridges versus trenches), and seafloor ages characteristic of different boundary types. During the week the assignment is available online, students have access to:
(1) an index map that locates three boundaries they are to study; and
(2) four maps from Sawyer's Discovering Plate Boundaries website that provide the data mentioned above.��

Student tasks are to:��
(1) document patterns in each type of data along the three targeted boundaries; and��
(2) use these observations in conjunction with their understandings of the processes that operate along different types of boundaries to decide whether each of the targeted sites is most likely to be a divergent, convergent, or shear boundary.��

This activity gives students practice in map reading, interpreting the likely tectonic setting of a boundary by pulling together constraints from several types of data, and collaborating with their classmates in an online environment. The activity also provides a foundation for understanding a wide range of phenomena that are discussed later in the semester in the context of plate tectonic processes.
Modifications on this activity from the community

Show More
Show LessContributed by Tom Hickson
I also use a version of Dale Sawyer's Discovering Plate Boundaries exercise in an online course. I used the basic idea of this activity and moved in onto Canvas, our LMS. Here is my adaptation of the activity, with maps and examples, illustrating how I have implemented it:

Description of the assignment: Student handout, ONLINE_ Characterizing Plate Boundaries (adapted).pdf (Acrobat (PDF) 166kB Feb19 21)
Answer sheet for students to record observations and interpretations: Target Boundaries: Student answer sheet (Acrobat (PDF) 1MB Feb19 21)
World map with Target Boundaries (Acrobat (PDF) 483kB Feb19 21)

Maps of the "target boundaries" -- my selected areas of focus for the exercise:












Example map, Boundary 3

Provenance: Thomas A. Hickson, University of St. Thomas
Reuse: This item is offered under a Creative Commons Attribution-NonCommercial-ShareAlike license http://creativecommons.org/licenses/by-nc-sa/3.0/ You may reuse this item for non-commercial purposes as long as you provide attribution and offer any derivative works under a similar license.












Example map, Boundary 2

Provenance: Thomas A. Hickson, University of St. Thomas
Reuse: This item is offered under a Creative Commons Attribution-NonCommercial-ShareAlike license http://creativecommons.org/licenses/by-nc-sa/3.0/ You may reuse this item for non-commercial purposes as long as you provide attribution and offer any derivative works under a similar license.












Map example, boundary 1

Provenance: Thomas A. Hickson, University of St. Thomas
Reuse: This item is offered under a Creative Commons Attribution-NonCommercial-ShareAlike license http://creativecommons.org/licenses/by-nc-sa/3.0/ You may reuse this item for non-commercial purposes as long as you provide attribution and offer any derivative works under a similar license.

Teaching Tips
Adaptations that allow this activity to be successful in an online environment
Sawyer's Discovering Plate Boundaries is a jigsaw exercise in which students collaboratively develop an empirical classification of plate boundaries by first studying an individual data set (e.g., seismicity) and then working as part of a multidisciplinary team to develop a composite classification for the boundaries of a single plate using several types of data. In order for the classification to be truly empirical, students are not introduced to the "traditional" classification of plate boundaries till the end of the exercise.��

In adapting this assignment to the online environment I have:

(1) asked students to prepare by becoming familiar with the standard classification of plate boundaries and the processes that operate at them;��
(2) limited their work to three targeted boundaries of different types; and��
(3) provided guidance about which features to look for in the each data set. I have found that these modifications help online students, who often work alone "on their own schedules", to avoid getting "lost" and frustrated with the assignment and to compensate for the lack of collaborative input they would receive in a classroom setting.

Elements of this activity that are most effective
The success of this exercise is really seems to depend on how well a student follows the directions. If a student learns about the geologic differences among plate boundaries, makes careful observations, and thoughtfully compares his or her observations to the expected patterns he or she typically does quite well based on answers to the follow-up questions. If, on the other hand, a student simply looks up the types of the targeted boundaries on a map and then attempts to "back out" the observations that he or she thinks should fit, the result is often inconsistency and a poor score on the questions. (I can often tell which approach a student is taking based on the queries they post to the discussion board, but rarely seem to be able to get those who are trying to work backwards through the assignment to change direction.)
Recommendations for other faculty adapting this activity to their own course:
To date my experience developing an engaging online exercise to help students learn the principles of plate tectonics has only been partly successful. I think that having such an exercise is critical, however, because this topic provides the framework for so much of what we learn in the geosciences. Based on my efforts to adapt elements of Discovering Plate Boundaries to an online environment I would offer three recommendations.

(1) Provide examples. Confronted with an unfamiliar map students are sometimes confused when asked to decide if seafloor age, for example, is uniform or variable along the length of a boundary. Showing them what you mean using snapshots from a map can often clear questions like this up quickly. Similarly, for written work a single example that gives them a clear sense of "what you're looking for" and can often head off a lot of questions.
(2) Choose the boundaries you ask students to study carefully. The scarcity of documented volcanism along a mid-ocean ridge or the burial of seafloor age belts by sediment along a trench can result in student observations that are correct, but problematic for correctly assessing the nature of a boundary.
(3) Stay on top of student questions and comments, and be prepared to make well-publicized "mid-course corrections" if something you thought was clear turns out to be misunderstood. These minor corrections happen naturally in face-to-face classes but can require real diligence to catch and correct in the online environment.

(Note: this resource was added to OER Commons as part of a batch upload of over 2,200 records. If you notice an issue with the quality of the metadata, please let us know by using the 'report' button and we will flag it for consideration.)

Subject:
Biology
Life Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
02/19/2021
Cheese Making Technology e-Book
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CC BY-NC-ND
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This book is a supplement to the online lectures and learning exercises in Introduction to Cheese Technology, a short course by the Department of Food Science, University of Guelph. However, please note that, in addition to the manual, you will need to refer to other materials throughout the course. The manual is also freely available to anyone online. You may use the content for personal reference and educational purposes provided you include a citation with the appropriate URL as follows: [Hill and Ferrer, Cheese Making Technology e-Book, accessed 27 Oct 2020].We would also like to extend an invitation to any readers who may be interested in learning more about cheese technology. Please check out the online Cheese Making Certificate and associated courses at this link. If you do not wish to complete the entire certificate, you can still enroll in any of the courses.

Subject:
Applied Science
Engineering
Material Type:
Textbook
Provider:
University of Guelph
Author:
Arthur Hill
Mary Ann Ferrer
Date Added:
05/07/2021
Clean Enough to Drink
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Students act as engineers contracted by NASA to create water filtration devices that clean visible particulates from teacher-prepared "dirty water." They learn about the worldwide need for potable water and gain appreciation for why water quality is an important issue for people on Earth as well as on the International Space Station. Working in groups, students experience the entire engineering design process, including a read-aloud book about the water cycle; a visiting water engineer presentation; their own online research about filter methods and designs; group brainstorming of designs (using ordinary household materials); filter construction and testing; redesign and retesting; lab book documentation of their notes, research, plans and results; and a summary poster presentation at a mini-engineering fair. Two design planning worksheets, a poster layout suggestion sheet and a grading rubric are provided.

Subject:
Career and Technical Education
Mathematics
Material Type:
Activity/Lab
Provider:
TeachEngineering
Date Added:
04/12/2023
Coastal Erosion Online Discussion
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The students are given the following:

Read the articles below about erosion along the Lake Erie shoreline and discuss them. What causes the erosion? What can be done to prevent erosion? Should people be allowed to build structures to protect their property from erosion? Should people be allowed to live along the shoreline in high erosion areas?

Students are expected to have completed the coastal erosion module (read text book, view powerpoint lecture and take a quiz) and read articles regarding coastal erosion along the Lake Erie coastline. In the online discussion, students must show that they understand coastal processes, the impact of man made structures on coastal processes, and can apply their values as they discuss what should be done, if anything, to reduce the impact of coastal erosion.
Teaching Tips
Adaptations that allow this activity to be successful in an online environment
This was designed as an online activity. I have also used it in face-to-face courses (students participate in online discussion prior to in-class discussion).
Elements of this activity that are most effective
This gets students thinking about how what they learn in class can be used to solve real problems faced by the local community and/or the world. Although some students propose impractical solutions, they are at least thinking.
Recommendations for other faculty adapting this activity to their own course:
Find local issues and/or global issues that show how geology can be used to solve problems.

(Note: this resource was added to OER Commons as part of a batch upload of over 2,200 records. If you notice an issue with the quality of the metadata, please let us know by using the 'report' button and we will flag it for consideration.)

Subject:
Biology
Earth and Space Science
Life Science
Oceanography
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
12/11/2020
Collecting Climate Data
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CC BY-SA
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This professional development article identifies resources that show young learners (K-grade 5) how scientists study Earth's climate and make predictions. The online lessons either allow students to collect and analyze data or learn about tools and technologies that make data collection possible. The lessons are aligned with national content standards for science education. The article appears in the free, online magazine Beyond Weather and the Water Cycle, which examines the recognized essential principles of climate literacy and the climate sciences for elementary teachers and their students.

Subject:
Education
Mathematics
Physical Science
Physics
Material Type:
Data Set
Lesson Plan
Teaching/Learning Strategy
Provider:
Ohio State University College of Education and Human Ecology
Provider Set:
Beyond Weather and the Water Cycle
Date Added:
04/08/2023
College Physics
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CC BY
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This introductory, algebra-based, two-semester college physics book is grounded with real-world examples, illustrations, and explanations to help students grasp key, fundamental physics concepts. This online, fully editable and customizable title includes learning objectives, concept questions, links to labs and simulations, and ample practice opportunities to solve traditional physics application problems.

Subject:
Physical Science
Physics
Material Type:
Textbook
Provider:
Rice University
Provider Set:
OpenStax College
Author:
Kim Dirks
Manjula Sharma
Paul Peter Urone
Roger Hinrichs
Date Added:
01/23/2012
Come and See an Aurora!
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In this activity, students will create their own travel brochure or poster inviting people to visit a place where they could see an aurora. It is recommended that the class complete Lesson 1 in this series - What I know about the Aurora - prior to this activity. Includes teacher notes and instructions, student workshops and an online, animated story, and related teacher resources on aurora. This is lesson four of a collection of five activities that can be used individually or as a sequence; concludes with a KWL (Know/Want-to-know/Learned) assessment activity.

Subject:
Applied Science
Astronomy
Atmospheric Science
Chemistry
Earth and Space Science
Environmental Science
Physical Science
Physics
Material Type:
Activity/Lab
Provider:
NASA
Provider Set:
NASA Wavelength
Date Added:
05/02/2023
Common Core Problem Based Curriculum Maps – emergent math
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CC BY-NC
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The following Problem Based Learning (PrBL) curriculum maps are based on the Math Common Core State Standards and the associated scope and sequences. The problems and tasks have been scoured from thoughtful math bloggers who have advanced math educator practice by posting their materials online.

Subject:
Mathematics
Material Type:
Full Course
Syllabus
Date Added:
04/08/2023
Common Sense Education - Let's Give Credit (Plagiarism and Citations)
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CC BY-NC-ND
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With so much information at our fingertips, students learn what it means to "give credit" when using content they find online. Taking on the role of a detective, students learn why it's important to give credit and the right ways to do it when they use words, images, or ideas that belong to others.

In this introduction to plagiarism and good digital citizenship, second graders are encouraged to give credit to people whose work they reference when doing projects.

Although written for second grade, this lesson could be easily adapted to upper primary and even middle school levels.

Subject:
Computer Science
Computer, Networking and Telecommunications Systems
English Language Arts
Material Type:
Activity/Lab
Lesson
Lesson Plan
Author:
Common Sense Media
Date Added:
05/12/2023
Comparing Constitutions (WA)
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How does Washington’s state constitution compare and contrast with the U.S. Constitution? In this lesson, students will find out! Guide your class through some basic similarities and differences as well as side-by-side text analysis with this lesson’s integrated reading/activity format.

LEARNING OBJECTIVES
Determine how the Washington State Constitution complements the federal structure of government in the United States
Compare the state government established by the Washington Constitution with the federal government defined in the U.S. Constitution
Compare and contrast rights protected by the Washington and U.S. Constitutions
Compare and contrast methods for amending the Washington and U.S. Constitutions

View this activity online or register with iCivics (free) to download materials. Materials may be copied or transmitted for noncommercial purposes with proper attribution.

Subject:
Political Science
Social Science
Material Type:
Lesson
Date Added:
04/05/2023
Comparing Electronic and Print Texts About the Civil War Soldier
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Which side will win as students investigate both sides of the battle of using print versus online text for research as they learn about the lives of Civil War soldiers?

Subject:
Arts and Humanities
History
U.S. History
Material Type:
Activity/Lab
Lesson Plan
Provider:
ReadWriteThink
Provider Set:
ReadWriteThink
Date Added:
06/21/2023
Computer Concepts Semester Lesson Plan
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CC BY
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This is the lesson plan for my college level, semester long, computer concepts course. Here's the course description ...

You are about to embark on an exciting journey learning about the information revolution and the incredible world of computers.

This course is very practical and applicable. It focuses on teaching you skills you can use. These skills include not only specific hands-on skills, like "right-clicking" and taking "screenshots," but also skills such as keeping yourself safe online, not texting while you're driving, and what to look for when buying computers (just to mention a very small fraction of the skills this course will teach you).

This is a university level course designed to introduce individuals to the world of computers, so it is rich in its depth and breadth of content. I have taught this course for over a decade and have refined it to be incredibly amazing and awesome. You are going to love this course and it will forever change your life. You will gain skills in this course which you will use for the rest of your life and which will make your life easier. Knowing how to use computers is essential in our day-and-age. This course will give you the skills you need to use computers well.

Presented with high-quality video lectures, this course will visually show you how to easily do everything with computers. This is just some of what you will learn in this course:

Learn the basic principles of hardware including circuits, coding schemes, binary, the five generations of computers, Moore's Law, IPOS, registers, cache, RAM, magnetic storage, optical storage, solid-state storage, ROM, BIOS, the motherboard, buses, and the CPU.

Learn how to operate a computer including a vast array of hands-on skills – just to mention a few for example: managing files, backing –up files, right clicking, taking screenshots, determining your computer’s properties, upgrading your computer, changing settings on your computer.

Learn how to use word processing software including the creation of a title page, document sections, headers and footers, styles, an automatically generated table of contents, the insertion of images, references, and the insertion of an automatically generated citation of works referenced.

Learn how to use spreadsheet software including formulas, functions, relative references, absolute references, mixed references, and the creation of a graph or chart.

Learn how to use video editing software including adding credits and transitions then publishing that video to a video hosting website such as YouTube.

Learn how to use databases including table creation, the setting of a primary key, the establishment of table relationships, the setting of referential integrity, and the creation and execution of a query.

Learn how to use presentation software to more effectively give presentations.

Learn to do some simple programing including designing, coding, testing, debugging, and running a program.

Learn about the world wide web including sending email, conducting searches , having familiarity with online educational resources such as Khan Academy, and having an awareness of online "cloud computing" tools such as Google Word Processing, Google Spreadsheets, and the many other online tools offered by Google.

Learn about application software and system software including operating systems, utilities, and drivers.

Learn about networks including architecture, topology, firewalls, security, wireless networks, and securing wireless networks.

Learn about the Internet, the World Wide Web, censorship, the digital divide, net neutrality, differing legal jurisdictions, website creation, multimedia, social media, and eCommerce.

Learn about information systems, systems development, and the systems development life cycle.

Learn about program development, programming languages, and the program development life cycle.

Learn about databases including table creation, primary keys, relationships, referential integrity, queries, and structured query language.

Learn about privacy and security issues related to computers.

Learn about robots and artificial intelligence including the Turing test.

Learn about intellectual property including patents, trademarks, copyrights, and the creative commons.

Learn about ethics and ethical issues relating to the use of technology.

Learn about health ramifications of using computers including repetitive stress injury, carpal tunnel syndrome, and ergonomics.

Learn about e-Waste and other environmental concerns related to technology.

Lifetime access to this course allows you to easily review material and continue learning new material.

After taking this course, you will have a thorough understanding of how to use computers well.

From beginners, to advanced users, this course is perfect for all ability levels. This course will add value to everyone's skillset.

Subject:
Computer Science
Computer, Networking and Telecommunications Systems
Material Type:
Lesson Plan
Provider:
Fresno City College
Provider Set:
Individual Authors
Author:
Todd McLeod
Date Added:
04/11/2023