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    Biological Diversity in Wetlands: Applying the Scientific Method
    An introduction to the Scientific Method for Introductory Biology students using plant and animal richness and environmental data from ephemeral ponds and permanent wetlands.
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    Let me in: Interpreting graphs of parasite infection in red blood cells
    The goal of this activity is to familiarize students with reading graphs, to think about how cells are different from one another and how parasites can take advantage of cell surface markers to...
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    6-001-Epidemic-ModelingScenario
    This paper presents real-world data, a problem statement, and discussion of a common approach to modeling that data, including student responses. In particular, we provide time-series data on the...
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    RAT ATTACK! Population growth
    This module contains exercises focused on the use and interpretation of density independent and density dependent population growth models. Students build logistic and exponential growth models in...
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    Expanded Graphing Tutorial
    The tutorial has two approaches for teaching about graph building and choosing the appropriate graph for different data types, a scaffolding approach and a exploration approach which can be...
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    Teaching the Biological Relevance of Chemical Kinetics Using Cold-Blooded Animal Biology
    This lesson plan was created to support non-chemistry major students in making connections between chemical kinetics and biological systems. Chemical kinetics is often viewed by students as an...
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    Quantifying Uncertainty and Distinguishing Data Sets in Introductory Physics
    Physics labs are moving increasingly to open-ended experiments where students develop experimental physics skills, rather than verify textbook physics concepts. This sequence of activities sets the...
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    Promoting Climate Change Literacy for Non-majors: Implementation of an atmospheric carbon dioxide modeling activity as an inquiry-based classroom activity
    Students who are directly involved in scientific activities develop a deeper understanding and appreciation of both scientific knowledge and the scientific process. This understanding is critically...
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    SNAPSHOT SERENGETI: Analyzing Wildlife Ecological Relationships in an upper-level Ecology course
    Two assignments were created to develop skills in ecological hypothesis testing, data analysis and interpretation using the Snapshot Serengeti and Gorongosa camera trap data and graphical...
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    Integrating Community Ecology Into the Study of Parasites: Exploring the Effect of Host Behavior on Parasite Transmission Rates
    Organismal life cycles are often presented as a set of facts to memorize in undergraduate biology courses. This approach is cognitively demanding for students and fails to convey how central life...
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    Building a Model of Tumorigenesis: A small group activity for a cancer biology/cell biology course
    The multistep nature of tumorigenesis is a foundational concept in the context of Cancer Biology. Many students do not appreciate the complex nature of cancer development nor do they understand how...
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    BioGraphI Interview Invitation (Sample Message) - Google Docs
    This document contains templates that help curriculum developers correspond with potential interviewees for the Biologist and Graph Interpretation (BioGraphI) Network. Each interview is featured in...
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    BioGraphI Considerations for Selecting a Potential Interviewee - Google Docs
    This document includes resources and advice to help curriculum developers choose a scientist to interview for the Biologist and Graph Interpretation (BioGraphI) Network. Each interview is featured...
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    Instructions for access to BioGraphI PrePost-Lesson Student Survey - Google Docs
    This document contains instructions for curriculum developers to invite students to complete a survey before and following their participation in curriculum produced by the Biologists and Graph...
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    BioGraphI Student Learning Outcomes Assessment Tool - Google Docs
    This document contains the student learning outcomes that guide the development of curriculum produced by the Biologists and Graph Interpretation (BioGraphI) Network and the survey instrument used...
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    BioGraphI Interview Questions - Google Docs
    This document contains and describes the interview questions used in interviews conducted by the Biologist and Graph Interpretation (BioGraphI) Network. Curriculum developers use it to prepare for...
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    An Overview of the Biologists and Graph Interpretation Project
    Biologists and Graph Interpretation (BioGraphI) is an NSF Research Coordination Network of faculty who work collaboratively to increase student persistence in biology through improving...
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    Decoding, Critiquing, and Creating a Graph from the Ground Up
    Students decipher a published graph with little supplemental information and are given more details in pieces before producing a new graph that displays the data more effectively and is easier to...
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    Thinking deeply about quantitative analysis: Building a Biologist's Toolkit
    Vision and Change in Undergraduate Biology Education encouraged faculty to focus on core concepts and competencies in undergraduate curriculum. We created a sophomore-level course, Biologists'...
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    Between a rock and a hard place. What can turning rocks tell us about land-use change impacts on animals living in a rock outcrop?
    Unique rock outcrops in the Western Ghats biodiversity hotspot in India provide a setting that challenges students to develop a study to assess the impact of land-use change on threatened animals...
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