Related lectures (33)
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.
Genome Duplication: Mechanisms and Models
Explores genome duplication mechanisms, DNA replication models, and experimental evidence supporting Watson and Crick's semiconservative model.
Chemistry of Amino Acids
Covers the organization of the course, protein structure, molecular interactions, and the significance of pH and functional groups.
Programmable RNA-Targeting & Genome Editing
Explores programmable RNA-targeting tools, CRISPR history, base editing, and CoVID-19 detection strategies.
Learning in Artificial Neural Networks
Discusses the evolution of artificial neural networks, challenges in supervised learning, and the role of innate behaviors in shaping behavior.
Systems Biology: Metabolism Modeling and Analysis
Covers systems biology fundamentals, metabolism modeling, and analysis techniques, emphasizing metabolic flux distributions and omics integration.
CRISPR-Based Tools & Diagnostics
Explores CRISPR-based tools and diagnostics for faster, simpler, and cheaper testing methods with high specificity and sensitivity.
Genome Duplication and Gene Families
Explores genome accuracy, gene duplication, and the impact of repetitive DNA sequences on genetic diversity.
Cell Composition: Metabolites and Macromolecules
Explores cell composition, including macromolecules, metabolites, ribosomes, and ion concentration, in prokaryotic cells like E. coli.
Genomics: Transposable Elements and DNA Fingerprinting
Explores transposable elements in the genome and the use of microsatellites for DNA fingerprinting.

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