Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Quizes
Exercises
Publications
Startups
Units
Show all results for
Home
Lecture
Microbial Growth Dynamics: Enzyme Kinetics and Chemostat Analysis
Graph Chatbot
Related lectures (55)
Chemical Reaction Engineering: Reactor Design
Explores chemical kinetics, reactor design, and critical thinking in chemical reaction engineering.
Chemical Reaction Engineering
Focuses on chemical kinetics, reactor design, and problem-solving skills with interactive modules for active participation.
Chemical reaction engineering: reactor design
Explores the Chemical Reaction Engineering algorithm applied to isothermal reactor design, with examples on SO2 oxidation and N2O4 decomposition.
Chemical Reaction Engineering: Algorithm and Stoichiometry
Explores the Chemical Reaction Engineering algorithm in batch reactors and CSTRs, focusing on stoichiometry and rate laws.
Enzymes: Basic Concepts and Kinetics
Delves into enzymes' basic concepts, kinetics, and catalytic strategies for reaction acceleration.
Chemical Reaction Engineering: Conversion and Reactor Sizing
Explores the algorithm for solving chemical reaction engineering problems, focusing on conversion and reactor sizing.
Enzyme Kinetics: Understanding Reaction Rates
Delves into enzyme kinetics, emphasizing how enzymes influence reaction rates through substrate concentration and the Michaelis-Menten equation.
Microbial Growth: Substrate Utilization and Chemostat Operation
Explores microbial growth, substrate utilization, chemostat operation, and biomass productivity in continuous systems.
Conversion and Reactor Sizing
Explores conversion, reactor sizing, and series reactors with practical examples.
Kinetics: Reaction Rates and Equilibrium
Explores reaction kinetics, rate laws, measurement techniques, and binding kinetics between ligands and proteins.
Enzymes: Basic Concepts and Kinetics
Explores enzymes' catalytic strategies, kinetics, and inhibition, emphasizing their role in accelerating biochemical reactions.
Chemical Reaction Engineering
Covers the analytical derivation of various design models and reactor sizing.
Chain Polymerisation: Mechanism and Kinetics
Explores the mechanism and kinetics of chain polymerisation, focusing on inhibitors and competitive inhibition in enzyme reactions.
Inclusion of Fermented Foods in Food Guides
Discusses the inclusion of fermented foods in global food guides, exploring their benefits and risks, enzyme kinetics, and the history of food enzymes.
Adiabatic Reactor Design
Covers the design of adiabatic reactors with a focus on isomerization reactions and energy balance calculations.
Chemical reaction engineering: reactor design
Focuses on isothermal reactor design, covering mole balances, rate laws, stoichiometry, and pressure drop effects.
Chemical Reaction Engineering
Covers chemical kinetics, reactor design, and reaction mechanism analysis.
Enzyme Kinetics
Explores enzyme kinetics, reaction rate phases, inhibition types, and mass balance equations.
Chemical Kinetics: Reactions and Catalysis
Explores chemical kinetics, enzyme catalysis, and factors affecting reaction rates in biological systems.
Microbial Growth: Understanding Cell Division and Measurement Techniques
Log in to Mediaspace to watch this video
Discusses microbial growth, cell division, measurement techniques, and applications in environmental microbiology.
Previous
Page 1 of 3
Next