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Taking Notes with Cornell System
Introduces the Cornell note-taking system, designed to facilitate revision by simplifying the identification of key points.
Conservation of Momentum and Kinetic Energy
Explores conservation of momentum and kinetic energy in collisions, emphasizing the importance of understanding collision outcomes.
Brownian Motion: Molecular Nature Revealed
Explores the history, mathematical models, and experimental techniques of Brownian Motion, revealing its molecular nature and significance in cell biology.
Elastic Collisions: Conservation Laws and Kinetic Energy
Explores the analysis of collisions, conservation laws, and kinetic energy exchange in elastic collisions between two bodies.
Conservation Laws and Bernoulli Equation
Covers conservation laws in fluid dynamics, including the Venturi effect and Bernoulli equation.
Introduction to Economic Growth and Sustainability
Introduces the course on economic growth and sustainability, emphasizing the need for collective action to protect the planet.
Scale-by-scale Energy Budget
Explores the scale-by-scale energy budget in fluid dynamics, emphasizing energy redistribution between different scales and conservation laws.
Transport Equation: Numerical Analysis
Covers optimization, control problems, and neural networks in the context of the transport equation.
Fluid Mechanics: Bridging Concepts between Electromagnetism and Fluid Dynamics
Revisits electromagnetism concepts to connect with fluid mechanics, discussing velocity fields, streamlines, and conservation laws.
Dendrite as a Cable
Discusses dendrites as cables, covering the cable equation derivation and current conservation in coupled compartments.