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    Data on Dead Zones and a Scientist Spotlight Featuring Benjamin Negrete, Jr.
    In this lesson, students plot data and interpret graphs of the metabolic responses of fish to hypoxic conditions. Then, students view and reflect on an interview with fish ecophysiologist Benjamin...
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    Using InTeGrate materials to incorporate sustainability into General Biology II at the University of North Carolina Charlotte
    I incorporated three units from InTeGrate into my General Biology II class. This document outlines how I used these materials, and what modifications I made to them.
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    Implementing a Math Prerequisite - Does it help or hurt?
    Poster on the effect of math prerequisite courses on student success in introductory biology. Presented at the 2020 BIOME Institute: Cultivating Scientific Curiosity
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    Why are Cells Small? Surface Area to Volume Ratio
    This module explores surface area to volume ratios in a cube and sphere in relation to cell size.
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    Managing Prairie Dogs for Ferret Reintroduction
    This case study explores the ecological relationship between black-tailed prairie dogs and black-footed ferrets.
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    Sizes, Scales and Specialization: Adapted to add scientific notation review
    This module explores how cell size and shape varies across cell types in the human body by having students calculate relative proportions of numbers in scientific notation. The adaptation has...
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    Sizes, Scales and Specialization: Using Relative Proportions and Scientific Notation to Highlight the Diversity of Cell Types
    This module explores how cell size and shape varies across cell types in the human body by having students calculate relative proportions of numbers in scientific notation.
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    Using Podcasts as a Supplemental Learning Tool for Genetics
    Genetics is a fascinating topic of biology. Establishing relevance is a key component of student learning. To increase learning, this resource includes summaries and teaching guides for integrating...

    Keywords: geneticspodcasts

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    Why Cells Change Weight: Demonstrating Linear Regression Through an Osmosis Experiment
    In this activity, students will perform an experiment utilizing dialysis tubing to create cellular models to demonstrate the linear relationship between cell weight and time in varying tonicities....
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    Nuclear and Cytoplasmic Viscosity
    This module introduces a modified Stokes-Einstein equation in the context of understanding the difference in viscosity between the nucleus and cytoplasm of cells
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    Histograms and Boxplots
    This lesson, created for an introductory ecology course, focuses on helping novice R users to import a data file, apply base R plotting functions, and use R Markdown to generate a reproducible report.
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    Quantitative Reasoning Heatmap Assessment - Google Docs
    This tool for formative assessment provides a mostly anonymous way for students to consider their confidence with a variety of skills related to quantitative reasoning in biology. The product of...
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    Human Evolution for Secondary and College Students
    This module is made up of four concepts. The goal of the first concept is to elicit an understanding of primate relatedness, phylogeny, and how specific characteristics are beneficial for life in...
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    Macromolecular math
    This worksheet was developed for use in an introductory biology course to review the chemical bonds and structure of biological macromolecules. A nutritional label is provided to illustrate that...
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    Cardiac Output
    This module introduces Fick's principle in the context of understanding the cardiac output. It is intended for an introductory biology audience.
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    Diversity Indices: Simpson's D and E
    This module introduces Simpson's diversity index in the context of understanding how to mathematically measure the species diversity in a community. It is intended for an introductory biology...
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    Hardy-Weinberg Equilibrium
    This module introduces the Hardy-Weinberg model in the context of understanding the population's genotype and allele frequencies. It is intended for an introductory biology audience.
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    Muscle Contraction
    This module introduces equations around muscle force in the context of understanding the Sliding Filament Model. It is intended for an introductory biology audience.
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    Nastic Movements in Plants
    This module introduces an osmotic model in the context of understanding plants' capability of rapidly adapting to changes in their environment. It is intended for an introductory biology audience.
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    Sizes of Organisms: The Surface Area to Volume Ratio
    This module introduces surface area-volume ratio in the context of understanding the limits or constraints on organism size. It is intended for an introductory biology audience.
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