How does life compute? Cells and molecules process complex information to survive, adapt, and replicate, functioning much like biological computers. This text-based course introduces you to the fascinating intersection of biology and computation, showing you how chemical networks and molecular interactions perform logical operations and solve complex problems. You will transition from understanding basic biological building blocks to analyzing how these components form intelligent, emergent systems. By studying the mathematical principles behind gene regulation, signal transduction, and metabolic pathways, you will gain the foundational knowledge needed to model biological systems and understand modern bio-engineering applications. What you will learn: Understand the core principles of molecular information processing and biological feedback loops; Model gene regulatory networks and metabolic pathways using mathematical concepts; Analyze the mechanics of signal transduction and cellular decision-making; Explore the fundamentals of DNA computing and how nucleic acids store and process data; Examine the principles of directed molecular evolution and genetic engineering; Learn how modern computational tools simulate cellular behavior. This course begins with essential terminology and foundational biological concepts before moving into mathematical models and practical computational frameworks. It is designed for beginners, requiring no prior background in advanced biology or computer science. Start reading today to unlock the computational secrets of the living world.
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