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Articulating Biotechnologies and Biomedicine: Genomics Case Study
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Metabolic Engineering: Tools and Concepts
Explores metabolic engineering tools, synthetic biology objectives, and metabolic pathway analysis for understanding cell physiology.
Genomics: Introduction and Regulatory Networks
Introduces genomics, covers sequencing technologies, genome variation, and explores human genetic linkage maps and RFLP methods.
Numbers in Biology: From DNA Sizes to Protein Mass Production
Covers models for biological phenomena, DNA packing, protein sizes, DNA replication, ribosome counting, and genome sizes.
Metabolic Engineering: Pathways and Fluxes
Explores the process of Metabolic Engineering, from genetic modifications to pathway analysis and genome-scale models.
Machine Learning Approaches to Human Disease
Explores the impact of machine learning in understanding human diseases, focusing on historical significance, natural products discovery, and challenges in designer drugs.
Genetics: History and Key Concepts
Covers the history of genetics, key concepts, DNA structure, gene expression, and genetic engineering.
Genomic Medicine: Personalized Health
Delves into genomic medicine, emphasizing personalized health and genetic factors associated with disease.
Metabolic Modeling Exercises
Covers exercises on genome-scale metabolic models, including FBA and TFA analysis, as well as modeling kinetics.
Gene Expression: Introduction and Data Analysis
Covers gene expression data quantification, genome analysis, and large-scale studies.
Genetic Variations and DNA Replication
Explores genetic variations, DNA replication errors, and practical applications in forensic science.