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    Module 6: Alternative Splicing
    This module explores how multiple different mRNAs and polypeptides can be encoded by the same gene. After completing this module students will be able to explain how alternative splicing of a gene...
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    Module 1: Introduction to the Genome Browser: What is a Gene?
    This lesson introduces the University of California Santa Cruz genome browser to students, walking them through some of the key features so that it can be used for analysis of gene structure.
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    Databases: A Study of Influenza
    This lesson introduces the student to the Influenza Research Database. Students will select Influenza genome sequences to see how they are related. Students tests hypotheses about evolutionary...
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    REMNet Tutorial, R Part 5: Normalizing Microbiome Data in R 5.2.19
    Video on normalizing microbiome data from the Research Experiences in Microbiomes Network
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    Figure of the Day - Adapted for Non-Majors
    Students use their number sense to make observations and come up with reasonable guesses or explanations for the patterns shown.
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    Molecular Biology of the Cell (MBoC)
    An online journal focusing upon generally-applicable studies of cell biology.
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    A BioGraphy of Life: How Graph Theory Makes Mathematics Recognizable, Relevant, and Research-Rich in Biology Education
    Presentation given at the 2106 SIAM Conference on Applied Mathematics Education on graph theory.

    Keywords: graph theory

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    Using computational molecular modeling software to demonstrate how DNA mutations cause phenotypes
    Students require a deep understanding of the central dogma before they can understand complex topics such as evolution and biochemical disorders. However, getting undergraduate biology students to...
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    Discovering Prokaryotic Gene Regulation by Building and Investigating a Computational Model of the lac Operon
    The ability to construct and reason through a biological system is an important skill to develop in science education. This level of understanding forces students to recognize the interrelatedness...
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    Targeting Misconceptions in the Central Dogma by Examining Viral Infection
    Understanding the central dogma and how changes in gene expression can impact cell function requires integration of several topics in molecular biology. Students often do not make the necessary...
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    RIOS Working Group - Debunking the Myth that Race is Biological
    This RIOS Working Group grant funding compensated Raritan Valley Community College (RVCC) students for creating curricular materials that could be used to debunk the myth that race is biological....
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    Conservation and ethics of using synthetic genetics
    This contains teaching material - powerpoints and handouts that can be adapted for lectures and/or discussion groups.
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    Hardy-Weinberg Equilibrium: a swirl resource
    Students will use swirl to understand Hardy-Weinberg equilibrium. The lesson starts with observed numbers of individuals for each genotype, and students will work through a number of steps to...
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    2015-Heiko_Enderling-Integrating experimental data to calibrate quantitative cancer models
    For quantitative cancer models to be meaningful and interpretable the number of unknown parameters must be kept minimal. We focus on a tumor hierarchy of cancer stem and progenitor non-stem cancer...
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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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    Facilitating the implementation and adaptation of data-centric teaching resources by closing gaps in the Open Education Resource (OER) lifecycle
    Presentation on data-centric open educational resources given at the 2019 UBER-GRC
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    QUBES: A vision of community collaboration in teaching and learning in quantitative biology
    Presentation about new projects QUBES is pursuing and how to get involved. Presented at the Seventh International Symposium on Biomathematics and Ecology: Education and Research 2014, Claremont, CA.
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    Counting the Forest and the Trees: Quantitative Undergraduate Biology Education and Synthesis (QUBES) is a tool for Vision and Change
    Presentation focusing on how QUBES plans to improve learning opportunities for all students enrolled in undergraduate biology courses, presented at Botany 2015.
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    QUBES: a community focused on supporting teaching and learning in quantitative biology
    This letter provides an overview of the Quantitative Undergraduate Biology Education and Synthesis (QUBES) Project funded through the National Science Foundation.
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    QUBES News, Highlights, and the Grand Opening of QUBESHub.org
    Abstract for a panel discussion about QUBES. Part of a minisymposium at BEER 2015.
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