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How Households in 4 Different U.S. States Use Energy
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Students use energy information from the U.S. Energy Information Administration in 2009 (most recent household compilation) in a jigsaw activity. Each student examines usage in a particular state and then the group compares similarities and differences in usage across the nation.

Keywords: household energy consumption, jigsaw activity

(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:
10/20/2021
How Many Is A Million?
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Roger Steinberg, Department of Natural Sciences, Del Mar College 5000 Dots by Computer (Click image to enlarge and download.)

(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
Geology
Life Science
Mathematics
Measurement and Data
Statistics and Probability
Material Type:
Diagram/Illustration
Simulation
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
09/09/2020
How Many People Can the Aquifer Support?
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The simulation has several conditions in which students are able to collect and analyze data. The first of these scenarios models the water table in an area where there has been no human development. Students observe the annual, cyclical pattern of the water table over a five-year time period, and then use this as the control for comparison to other scenarios. Students then investigate scenarios in which a city, or a city plus a farm, are added. Students can choose to add wells to the city and the farm and select well pumping rates to meet human consumption needs in the city. Wells that are added in the farm scenario have predetermined pumping rates and are active during the growing season only.

As students add wells and gather data, they observe the effects on the wetlands, outflow of the river, and changes to the water table. When a single cell on the map is selected, a graph is generated showing water table data over a five year period for that cell. Using the graphs, students can quantitatively make observations and use data in order to create computational models. They can analyze and interpret the results of pumping over time and the effect on the water table and river outflow. Students can calculate the area of the wetland using the graphs generated by the simulation for each scenario. Examining cross-sections of the map also encourages students to make qualitative observations.

Students can further investigate the relationship between surface and groundwater by adding a drought option to each scenario. Students will collect and analyze data as before, and draw conclusions across the investigated scenarios to understand the effects of drought. After examining current data and news articles from California, students are asked to construct explanations based on evidence collected in the simulation for how the availability of fresh water, in addition to natural hazards such as drought, and climate change, influence human activity.

(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
Hydrology
Life Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
08/21/2020
How Many Plants Make a Future? The Carbon Dioxide Challenge
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This activity focuses on the role of photosynthesis in a sustainable future. Students explore the effect of photosynthesis and respiration in a 'closed systems' containing plankton, marine plants, and fish. By calculating carbon dioxide uptake and production in these systems, they predict a plant: animal ratio sufficient to maintain a system in carbon dioxide 'balance' for one hour.

(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:
Agriculture and Natural Resources
Applied Science
Biology
Chemistry
Environmental Science
Environmental Studies
Life Science
Mathematics
Physical Science
Material Type:
Activity/Lab
Simulation
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
08/09/2022
How Much Energy is on my Plate?
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This activity is part of the community collection of teaching materials on climate and energy topics. This activity was submitted by faculty as part of the CLEAN Energy Workshop, held in April, 2011.

(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
Mathematics
Measurement and Data
Statistics and Probability
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Author:
Lane Seely, Karin Kirk
Date Added:
01/20/2022
How Much Oil Leaked from Deepwater Horizon?
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Students develop an estimate of the total quantity of petroleum
discharged from the Deepwater Horizon from 20 April to 15 July 2010
using only two known facts, the diameter of the riser and the flow rate
of the oil/gas mixture emanating from the riser.

(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
Chemistry
Life Science
Physical Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
08/28/2020
How Much Water Do I Use?
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This activity provides an opportunity for the student to collect data on their individual water use to set the stage for a unit on water resources.

(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
Business and Communication
Earth and Space Science
Hydrology
Life Science
Management
Political Science
Social Science
Material Type:
Activity/Lab
Homework/Assignment
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
11/12/2019
How Slab Dip Affects the Location of Volcanoes
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Students will plot the locations of earthquakes on the top of subducting slabs to determine slab dip and will then develop hypotheses regarding the relationship between slab dip, the depth of the slab, and volcanic activity on the surface.

(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
Physical Science
Physics
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
08/22/2019
How To Start + Grow Your Bee Program
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CC BY-NC-ND
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Learn how to build a strong foundation for your Bee Program! Our most successful programs begin with a layer of lessons and curriculum. Here we share exactly how to start a Bee Program and grow from the bottom up! Whether or not you have live bees on your campus, this will help to grow a community around your buzzworthy educational endeavors!

The folders in this Group will provide curriculums, virtual field trips with lessons, suggested Citizen Science Projects, book clubs for kids with lessons, and relevant webinars and recordings to help any educator deliver quality instruction. All of our offerings have teacher guides, are mapped to the standards, and are easily adapted to digital platforms.

We recommend the educator work through each level of the How to Start + Grow Your Bee Program Pyramid by exploring the offerings within each Folder. The resources build on each other as the educator and students move through this learning pathway.

Subject:
Agriculture and Natural Resources
Applied Science
Biology
Education
Elementary Education
Environmental Science
Environmental Studies
Life Science
Material Type:
Diagram/Illustration
Author:
The Bee Cause Project
Date Added:
05/12/2023
How are Flow Conditions in Volcanic Conduits Estimated?
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SSAC Physical Volcanology module. Students build a spreadsheet to calculate velocity of rising magma in steady-state Plinian eruptions using conservation of mass and momentum.

(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
Mathematics
Measurement and Data
Statistics and Probability
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
05/07/2018
How do Faults Slip: Earthquakes versus Episodic Tremor and Slip
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Despite what we have learned from the theory of plate tectonics, the specifics of how those plate motions contribute to movement along faults remain a matter of much debate. Since the discovery of plate tectonics, scientists have recognized that earthquake activity, both the orientation and magnitude, is related to plate motions. However, efforts to total up the motion simply associated with earthquakes often falls far short of the plate motions. This suggests that plates have a way to slide past one another along faults without generating earthquakes, and discovering what controls whether faults produce earthquakes is critical for better characterizing seismic hazards around the world. Scientists are using a combination of GPS and seismometer recordings to investigate this issue. Some portions of a fault reveal traditional earthquake stick-slip behavior where gradual GPS motions show the fault is locked for a long time while plate motions cause stress to accumulate at the fault until the rocks break and the fault moves over the span of minutes generating large seismic signals and an abrupt GPS motion. In 2003, researchers discovered that portions of a fault also release accumulated stress more gradually over the course of several weeks in the form of a slow slip event that is accompanied by weak seismic tremors observed in a narrow frequency range that requires specific filtering to observe. These new phenomena are described as episodic tremor and slip as they recur on nearly an annual basis, much more frequently than large earthquakes which can have recurrence intervals of 50-5000 years. To better understand how faults move, this activity will examine both GPS and seismic data in the Cascadia region to identify key observations and build interpretation from them.

(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
Geology
Life Science
Mathematics
Measurement and Data
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
09/30/2022
How do cladistics work? Generating phylogenetic trees using everyday objects.
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Students of paleontology, evolutionary biology and Earth history will be best able to critically analyze readings about evolution if they have first hand experience generating their own evolutionary hypotheses. In this lab exercise, students apply the principles of cladistics to create evolutionary trees of fun, familiar objects. The candy bar lab concept -- expanded here - came from Dr. Robert Gaines of Pomona College.

Part A -- Candy bars: The instructor provides about 12 "taxa" of candy bar. Students are welcome to taste the samples as they work, but make sure some of each bar is left for examination. Working in groups, students assign characters and states to the candy taxa, decide what's synapomorphic, and sketch a cladogram (tree), marking where new characters or states arise. Toward the end of the period, groups share their findings with the rest of the class, and together all students decide on the best tree. As students discuss the validity of their characters and argue about how to arrive at the most parsimonious tree, they will begin to comprehend the rules -- and pitfalls -- of cladistic analysis. At this point, the instructor might have them actually enter character data into a computer program such as MacClade, and project the tree results for all to see and discuss.

Part B -- Get creative!: After the candy bar lab, the students' homework assignment is to construct a cladogram and evolutionary hypothesis about a group of objects of their choosing. Ideas for "taxa" include models of car (characters could include hatchback, 4WD, sunroof, number of seats, engine capacity, etc.), board games (spinner or dice, number of players, cards used, etc.), or rock bands (members, instruments, genre, etc.). Just about anything -- biological organisms excluded -- with enough characters and states can be used, and students enjoy coming up with unique approaches. Students will hand in a character matrix, hand-drawn tree with character transformations indicated, and an evolutionary narrative explaining the relationships among their group and discussing constraints and biases. Depending on the time allotted, and the instructor's expertise, this could go a step further with students entering character data into PAUP and/or MacClade to obtain computer-generated trees.

(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:
08/19/2019
How do we recognize and use fossils in outcrop?
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Getting students to "put on paleontologists' hats" before their first fossil-hunting field trip allows for a more enriching field experience. Rather than handing out an instructor-prepared field guide (that few students read, anyway), the students essentially work up their own geologic/paleontologic interpretation of a site, using a custom toolkit they develop through classroom and homework exercises.
The activity begins with a worksheet that can be completed in groups during class (recommended) or as homework. Students are asked to imagine scenarios of fossil preservation, suggest factors that influence the completeness of the fossil record, and think of ways that fossil assemblages can give clues to the stratigraphic position and paleoenvironment of a rock formation. The instructor is involved as a guide, introducing concepts and terminology as needed. Students will also discuss -- with help from a textbook, specimens, or slide presentation - how the characteristics of major fossil groups might be used to identify a fossil in outcrop (for example, the coil of a gastropod, the pinnules of a crinoid).
Next, each student is assigned to be an expert on one taxon or faunal group that they will encounter on the trip. This requires reading a fossil identification guide or instructor-prepared handout. They will make an "expert's notecard" to bring along on the field trip, and will be expected to find and present examples of their fossil(s) on the field trip. The taxonomic level or groups assigned will vary depending on the fossil assemblage and the class size.
The activity culminates with the field experience, during which students keep a detailed field notebook (bringing along their in-class worksheets for reference). In the field, students will identify modes of preservation, assist one another as "experts" in fossil identification, and discuss the paleoecological and paleoenvironmental setting of the geologic section. After the field trip, the class compiles a faunal list for the site. Each student writes up an interpretation based on their individual observations and those made as a class.
This set of activities can be streamlined if, for instance, the field trip is only a small unit of a general geology course. Rather than using open-ended discussion questions on the preliminary worksheet, the instructor can assign reading or give a lecture that covers modes of preservation and other concepts that students will use to complete the worksheet. The goal remains, however, for students to think about what they will observe at the outcrop BEFORE they are on the rocks.

(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:
Agriculture and Natural Resources
Biology
Environmental Studies
Life Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
08/19/2019
How myths form: Accounts from Mt. Pelee
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CC BY-NC-SA
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This is a great activity for class sizes ranging from small seminars to lecture classes. It's particularly appropriate for courses that relate hazards/volcanism to culture, society, and human interest subjects like risk management. I designed it for a Volcanoes and Society class.

(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
Social Science
Sociology
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
06/19/2020
How should I shower?
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In this activity, students will investigate the questions: What are the benefits/costs of 3 varieties of shower head types: standard, low flow, massage spray? Which would be best for a homeowner? For the university dorms?

(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
Mathematics
Measurement and Data
Statistics and Probability
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
08/18/2022
How to Make Yeast Cells Thrive
Read the Fine Print
Educational Use
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Students set up and run the experiments they designed in the Population Growth in Yeasts associated lesson, using simple yeast-molasses cultures in test tubes. Population growth is indicated by the amount of respiration occurring in the cultures, which in turn is indicated by the growth of carbon dioxide bubbles trapped within the culture tubes. Using this method, students test for a variety of environmental influences, such as temperature, food supply and pH.

Subject:
Applied Science
Biology
Engineering
Life Science
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
10/14/2015
How to be a field geologist: an in-class exercise to introduce students to basic outcrop analysis
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Analyzing an outcrop for the first time is challenging for many students. In an effort to prepare students for their field trip, this exercise gives students practice with basic outcrop analysis before going into the field. Although this exercise is not a substitute for a field experience, it requires students to think about what they should be observing and noting at an outcrop before visiting an actual field site. First, students watch a short video tutorial on analyzing an outcrop. Then, they are given a color photograph of an outcrop and a hand sample and complete a field notebook entry for the outcrop.

(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:
08/03/2022
Human Anatomy
Unrestricted Use
CC BY
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The purpose of this textbook is to serve as a resource for students who are taking a first semester human anatomy course. All efforts were made to ensure the material covered in this resource is consistent, accurate, and accessible. This material was also designed to be equitable, diverse, and inclusive.

Subject:
Biology
Life Science
Material Type:
Textbook
Provider:
LibreTexts
Date Added:
05/02/2023