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    Screen Casts for Foundations of Bioinformatics at UCSD
    Collection of videos developed by Barry Grant at UCSD for his course, BGGN-213
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    How do we do Bioinformatics?
    A description of the computational setup for “Foundations of Bioinformatics” (BGGN-213) See: http://thegrantlab.org/bggn213/
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    What is Bioinformatics?
    This second screencast introduces bioinformatics, details major leaning goals & expectations of BGGN-213 and outlines the areas of bioinformatics covered in ...
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    Foundations of Bioinformatics (BGGN-213)
    This first short screen-cast introduces “Foundations of Bioinformatics” (BGGN-213) course at UCSD and covers some pre-course logistics.
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    ProteinPhysiochemistry
    How to determine physiochemical features of proteins using ExPasy Protpram, SOSUI server, and PSortB programs.
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    LEAGSEA
    How to perform Leading Edge Analysis in Gene Set Enrichment Analysis by Broad Institute
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    Using Phyre2
    How to use Phrye2 and 3DLigandSite to computationally predict protein and active site structure and binding partners (substrates/cofactors/coenzymes).
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    Simple Heat Maps with Morpheus
    Learn how to load an Excel file of raw data into Morpheus and change between relative and global scales.
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    How to create "funny symbols" (aka math / statistical notation) in Microsoft Word / Office
    YouTube video on using statistical notation in Microsoft Word.
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    Genomics Education Alliance: A Collection of Posters for the 2020 BIOME Institute.
    This is a collection of posters from members of the Genomics Education Alliance (GEA) that will be presented at the 2020 BIOME Institute.
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    The Genomics Education Partnership: Introducing Undergraduates to Research by Engaging Them in Genome Annotation
    Since 2006, the Genomics Education Partnership (GEP; http://gep.wustl.edu) has helped faculty bring genomics research experiences into the undergraduate curriculum.
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    Ciliate Genomics Consortium: a professional learning community sharing modular curricula to support undergraduate research in the classroom
    The Ciliate Genomics Consortium (CGC) employs an integrative teaching and research model that combines both inquiry-driven class laboratory activities and collaborative consortium pedagogies to...
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    The Genomics Education Partnership: Exploring best practices in implementation of a genomics CURE
    Since 2006, the Genomics Education Partnership (GEP) has incorporated authentic genomics research experiences into the undergraduate curriculum.
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    Lesson IV - Comparative Genomics
    Genome Solver began as a way to teach undergraduate faculty some basic skills in bioinformatics; no coding or scripting is required. Lesson IV, Comparative Genomics, discusses some of the tools...
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    The Genomics Education Partnership: Democratizing Genomics Research Experiences Nationwide
    This poster provides a general overview of the Genomics Education Partnership (GEP), and information on our Diversity, Equity, and Inclusion efforts are outlined in the accompanying video.
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    Overview of the Genomics Education Partnership
    Poster exhibited at the National Association of Biology Teachers (NABT) 2022 conference providing an overview of the Genomics Education Partnership including its benefits to faculty, students, and...
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    Lesson II - Databases
    Genome Solver began as a way to teach undergraduate faculty some basic skills in bioinformatics; no coding or scripting is required. Lesson II introduces the principal databases for microbial...
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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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    Build Multiomic and Visualization Skills in Bioscience Lecture
    This resource promotes inclusive learning by using all free platforms to extend the central dogma to an applied experience. Genomics is focused on with literature reviews that are performed to...
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    Phage Comparative Genomics Lab Manual
    A lab manual containing detailed instructions for several bioinformatics tools (dot plots, Phamerator maps, phylogenetic trees, and gene content similarity), all of which enable students to perform...
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