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Aging: Bench to Bedside
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CC BY
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This collection focuses on a rapidly evolving field in which the study of both species-specific and ubiquitous aging mechanisms informs the biological process of aging. Yet the field is not without substantial controversy, differing views arise as we come to understand aging across model systems - from bacteria to humans.

Subject:
Biology
Life Science
Material Type:
Data Set
Primary Source
Provider:
Public Library of Science
Provider Set:
Biology and Life Sciences
Date Added:
04/11/2016
Aiduqing inhibits breast cancer metastasis via TAM/CXCL1/Treg pathway suppression
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CC BY
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This resource is a video abstract of a research paper created by Research Square on behalf of its authors. It provides a synopsis that's easy to understand, and can be used to introduce the topics it covers to students, researchers, and the general public. The video's transcript is also provided in full, with a portion provided below for preview:

"Metastasis is the leading cause of breast cancer-related death, but traditional Chinese medicines such as Aiduqing (ADQ) can help prevent it. ADQ is known to target caveolin-1, CXCL1-mediated autophagy, and matrix metalloproteinase-related epithelial-mesenchymal transition, but it remains unclear whether it also modulates tumor-associated macrophage (TAM)/CXCL1 activity to remodel the tumor microenvironment. To find out, researchers recently examined the effects of ADQ in mice and cultured cells. In mice, ADQ significantly reduced xenograft tumor growth and lung metastasis without causing toxicity. ADQ also remodeled the immunosuppressive tumor microenvironment. Mechanistic studies revealed that ADQ reduced CXCL1 expression and secretion from TAMs to suppress CD4+ T cell chemotaxis and Treg differentiation, thus increasing CD8+ T cell cytotoxicity..."

The rest of the transcript, along with a link to the research itself, is available on the resource itself.

Subject:
Biology
Life Science
Material Type:
Diagram/Illustration
Reading
Provider:
Research Square
Provider Set:
Video Bytes
Date Added:
10/13/2021
Air Particulate Analysis
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CC BY-NC-SA
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Phase 1: Definition of Projects and Research Teams (Homework +1 Class)

Each student is assigned the task of proposing a site to investigate within the city and the surrounding region. Students are encouraged to discuss the assignment with community members for suggestions and inspiration. Each student will produce an easel-size poster of their proposal highlighting the following:


Site location;

Reasons for selecting this site;

Potential interest to the community;

Potential logistical problems associated with the proposed site/project.

Posters will be hung in a gallery-walk format, and each student will mark the location of their proposed study site on the classroom map of New York City. The class is given time to read and comment on each of their peers' proposals, after which the instructor will lead a class discussion of the interests, merits, and obstacles associated with each proposal, with the goal of having the class settle on the set of projects on which to move forward.
Students will define groups of 2 to 4 students per project. If more than 4 students are interested in the same site, then multiple groups may develop parallel projects.

Phase 2: Data Collection and Analysis (5 weeks)

In consultation with the instructor, teams develop and implement a sampling protocol, including the documentation of terrain, human activity, and weather conditions (wind speed and direction) at the time of collection. Sample stations and prevailing wind direction are plotted on Google Earth to determine likely sources of particulates. Using binocular microscopes students document size distribution, form, color, and abundance of particulates. This data is analyzed using statistical functions in Excel. Teams use SEM-EDS analysis to determine the composition of particles, and more fully describe their form. Teams submit weekly progress reports, including personal work reports for each team member.

Phase 3: Communication of Results (1 Week)

Teams submit to their instructor a formal laboratory report: Purpose, Equipment, Method, Data Tabulation, Data Analysis, and Conclusions.
Teams prepare an oral presentation, or visual information campaign, targeted at an audience of their choice (e.g., neighbors, church group, community activist group, college administration) using discourse appropriate to that audience. Teams present in an in-class dress-rehearsal prior to their formal presentation. Teams invite members of their desired audience to the presentation (official invitations sent). On the last day of class, the instructor leads a debriefing and critique of the presentations, highlighting results and effective communication techniques.

(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:
Atmospheric Science
Biology
Life Science
Physical Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Author:
Wayne Powell
Date Added:
12/10/2020
Air Pollution
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CC BY-SA
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The Phoenix metropolitan area, like many large cities, has problems with air pollution at certain times of the year. You can do a simple experiment to determine some of the factors that affect air pollution.

Subject:
Biology
Life Science
Material Type:
Activity/Lab
Assessment
Lesson Plan
Provider:
Arizona State University
Provider Set:
Ask A Biologist
Author:
Dr. Biology
Date Added:
06/10/2009
Air Pollution [Liberal Arts: Math and Science/Natural Science]
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CC BY
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This assignment was designed for students in the pathways introductory chemistry class and the first year seminar and aligns with the Inquiry and Problem Solving core competency. In this context, there is a focus on framing the issues (identifies and/or addresses questions and problems), evidence gathering (assembles, reviews and synthesizes evidence from several diverse sources), evidence (analyze the data to address the questions posed) and conclusions (critical thinking, reflect on the outcomes, draw conclusions and generate new knowledge). There is also a Global Learning component based on comparing data collected locally with corresponding data from other locations or countries. The assignment includes the written communication ability with a focus on "Content Development and Organization," as well as the clarity of the communication and its purpose. The overall aim of this assignment is to enhance students' conceptual learning and understanding of key issues related to society as well as their course. This assignment was developed as part of a LaGuardia Global Learning mini-grant and CUNY Experiential Learning and Research in the Classroom mini-grants.
The assignment will be scaffolded over about 3 weeks and is worth about 10% of the final grade.
To further increase the success of this assignment, instructors might want to consider the following: Use class discussions to focus on the relevance and importance of conceptual learning. In order to improve the data analysis aspect, incorporating class demonstrations of how to conduct the analysis and guide discussions about what the data means. Giving students more detailed rubrics with formal expectations of the requirements of the assignments, particularly in the written format Find ways to increase student participation in class discussions.
When this assignment has been utilized in previous semesters, students clearly displayed the capability to relate the co-curricular experiences in the data collection and its analysis to concepts and ideas covered during class. Evidence for this came from very dynamic and interactive class discussions based on air pollution as well as from the output of the written assignment, in which students were able to relate the nature, sources and chemical properties of the pollutants to their impact on the environment, health and society in general.
LaGuardia's Core Competencies and Communication Abilities
List the Program Goal(s) that this assignment targets
Global Learning based on comparing pollutant levels around the LaGuardia campus with those in other locations or countries. It is also an IPS assignment, incorporating scientific literacy and thinking, as students need to analyze the data, interpret it and reflect on the outcomes.
List the Student Learning Objective(s) that this assignment targets
Identify and apply fundamental chemical concepts and methods. Gather, analyze, and interpret data.
List the Course Objectives(s) that this assignment targets
Explore the complex connections between chemistry and society. Apply chemical principles to real world issues, including ethical aspects. Gather, analyze, and interpret data.
Write a short description of the pedagogy involved in executing this assignment
Students collect and analyze the data, interpret the results in terms of pollution levels, safety and ethics and compare with EPA standard levels and with levels in other countries.
Outside the classroom events will be organized for data collection. There will be class and group-based discussions focused on the data, its analysis and the connections to society.

Subject:
Applied Science
Biology
Chemistry
Environmental Science
Life Science
Mathematics
Physical Geography
Physical Science
Statistics and Probability
Material Type:
Homework/Assignment
Provider:
CUNY Academic Works
Provider Set:
LaGuardia Community College
Author:
Alberts, Ian
Date Added:
06/16/2022
Air-sea Interactions: Activities in Oceanography
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CC BY-NC-SA
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This online set of activities help students learn properties of ocean waves, wind-wave relationships and properties of tsunamis.

(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
Geoscience
Life Science
Mathematics
Measurement and Data
Physical Science
Statistics and Probability
Material Type:
Activity/Lab
Assessment
Diagram/Illustration
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Author:
Steve LaDochy
Date Added:
08/23/2019
Alaska Earthquake Hazard Inventory & Mitigation Planning
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CC BY-NC-SA
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In this two-part activity, students/participants first:
-
Complete a Hazard Inventory for their city or area of interest in the event of a magnitude 7 or larger earthquake and tsunami.
-
Identify what critical structures and infrastructure will be affected.
Then:
-
Write a summary statement assessing strengths and vulnerabilities of essential services or infrastructure.
-
Propose actions for mitigating vulnerabilities.
-
Create an Action Plan to address identified needs.

(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
Author:
Bonnie Magura (Portland Public Schools), CEETEP (Cascadia EarthScope Earthquake and Tsunami Education Program), and ANGLE Project
Date Added:
09/26/2022
Alaska GPS Analysis of Plate Tectonics and Earthquakes
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CC BY-NC-SA
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This activity introduces students to high precision GPS as it is used in geoscience research. Students build "gumdrop" GPS units and study data from three Alaska GPS stations from the Plate Boundary Observatory network. They learn how Alaska's south central region is "locked and loading" as the Pacific Plate pushes into North America and builds up energy that will be released in the future in other earthquakes such as the 1964 Alaska earthquake.

(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:
Applied Science
Biology
Engineering
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:
Beth Pratt-Sitaula
Date Added:
09/26/2022
Alaskan Tribes Join Together to Assess Harmful Algal Blooms
Unrestricted Use
Public Domain
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Tribal communities in southeastern Alaska are partnering with federal and state agencies to investigate increasing harmful algal blooms—events that pose human health risks to subsistence harvesters.

Subject:
Biology
Life Science
Material Type:
Case Study
Provider:
National Oceanic and Atmospheric Administration
Provider Set:
U.S. Climate Resilience Toolkit
Date Added:
08/18/2016
Albian fossils of the Anglo-Parisien basin
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This illustrated guide to Albian (Cretaceous) fossils provides an extensive photo collection of fossils from the Anglo-Parisian basin. Additional information, high resolution photos and illustrations can be accessed by clicking the fossil icons located on the globe, the time scale or along the top of the page. Although the site is written in French, a non-French-speaking visitor will find this page easy to navigate and the photos well worth the visit. Fauna featured on this site include ammonites, nautiloids, belemnites, gastropods, crusteceans, echinoderms, marine vertebrates and corals.

Subject:
Biology
Geoscience
Life Science
Physical Science
Material Type:
Diagram/Illustration
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Author:
Jolly David
Date Added:
11/07/2014
Alcoholic Fermentation in Yeast – A Bioengineering Design Challenge
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CC BY-NC
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 Alcoholic Fermentation in Yeast – A Bioengineering Design Challenge Grade Level: 10thSubject: ALSAnimalsDuration: 90 minutesDOK Level: 3SAMR Level: Substitution Indiana Standard: ALSA-2.17 Describe cellular respiration. Recognize that animals perform only respiration, while plants perform both photosynthesis and respiration. Also, describe the transformation of energy during respiration, and the role of ATP produced in respiration for other metabolic processesObjective: Students will be able to explain the process of cellular respiration and design an experiment .Essential Question: What is the optimum sucrose concentration and temperature to maximize rapid CO2 production?Procedure: Handout the student lab sheet.Have the students answer the questions in part 1Have them draw the steps in part to in their research notebookHave the students complete the lab part 2Have the students record the results in their research notebookHave the students design and complete lab part 3Product or Assessment: Students will be assessed on their results in their research notebook. Credit: Cellular Respiration lab http://serendip.brynmawr.edu/sci_edu/waldron/Teacher Preparation Notes 

Subject:
Biology
Material Type:
Lesson Plan
Author:
Macon Beck
Date Added:
07/13/2017
Alcohols, Ethers, and Epoxides: Crash Course Organic Chemistry #24
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Some Rights Reserved
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What comes to mind when you think of alcohol? Probably alcoholic drinks like beer or wine. But in organic chemistry alcohols are an important and versatile family of compounds. In this episode of Crash Course Organic Chemistry, we’ll use alcohols as a starting point to get other types of compounds like ethers, epoxides, and more!

Subject:
Biology
Chemistry
Life Science
Physical Science
Material Type:
Lecture
Provider:
Complexly
Provider Set:
Crash Course Organic Chemistry
Date Added:
03/16/2021
Aldehyde and Ketone Reactions - Hydrates, Acetals, & Imines: Crash Course Organic Chemistry #29
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We’ve already learned the basics of carbonyl chemistry and talked about how we can synthesize aldehydes and ketones, but there’s still so much more to learn, like the role carbonyl groups play in reactions involving sedatives! In this episode of Crash Course Organic Chemistry we’re diving deeper into aldehydes and ketones by focusing on addition reactions of oxygen and nitrogen based nucleophiles. We’ll cover hydrates, acetals and hemiacetals, imines and enamines, and more!

Subject:
Biology
Chemistry
Life Science
Physical Science
Material Type:
Lecture
Provider:
Complexly
Provider Set:
Crash Course Organic Chemistry
Date Added:
06/09/2021
The Aldol and Claisen Reactions: Crash Course Organic Chemistry #44
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Organic chemistry is a great workout for your brain, and to keep its energy up, your brain needs glucose. To maintain blood glucose levels, our bodies go through a process called gluconeogenesis, which involves the important type of organic reaction we’re getting into today: aldol reactions! In this episode of Crash Course Organic Chemistry, we’ll learn what an aldol is, as well as how aldol reactions work and what they do. Plus we’ll learn about a similar reaction, Claisen condensation.

Subject:
Biology
Chemistry
Life Science
Physical Science
Material Type:
Lecture
Provider:
Complexly
Provider Set:
Crash Course Organic Chemistry
Date Added:
01/21/2022
Alerte Terre!: An Interactive Lecture  Activity  on  Environmental Topics
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CC BY-NC-SA
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In this Interactive Lecture Demonstration, students will predict the main issues that might be included in short French language videos treating topics such as endangered species, organic farming, the effect of aerosols on the environment, pollution and sustainable development. They will then view short videos on the topics and reflect on how their prior assumptions meshed with reality.

Subject:
Applied Science
Arts and Humanities
Biology
Ecology
Environmental Science
Geoscience
Languages
Life Science
Physical Science
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Starting Point (SERC)
Author:
Laura Franklin
Date Added:
08/28/2012
Algae: Tiny Plants with Big Energy Potential
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Educational Use
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Students are introduced to biofuels, biological engineers, algae and how they grow (photosynthesis), and what parts of algae can be used for biofuel (biomass from oils, starches, cell wall sugars). Through this lesson, plants—and specifically algae—are presented as an energy solution. Students learn that breaking apart algal cell walls enables access to oil, starch, and cell wall sugars for biofuel production. Students compare/contrast biofuels and fossil fuels. They learn about the field of biological engineering, including what biological engineers do. A 20-slide PowerPoint® presentation is provided that supports students taking notes in the Cornell format. Short pre- and post-quizzes are provided. This lesson prepares students to conduct the associated activity in which they make and then eat edible algal cell models.

Subject:
Applied Science
Biology
Chemistry
Engineering
Life Science
Physical Science
Material Type:
Lesson
Provider:
TeachEngineering
Provider Set:
Lessons
Author:
Lauren Jabusch
Date Added:
05/16/2017