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Introduction to Microscale Transport Processes
Learn the foundational principles of fluid flow, heat transfer, and mass transport at the microscale to analyze lab-on-a-chip and microfluidic systems.
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Over deze cursus
As technology shrinks, the physical laws governing fluid flow, heat transfer, and mass transport change dramatically. Understanding these microscale phenomena is essential for developing modern biomedical devices, chemical sensors, and advanced cooling technologies. This course provides a clear, accessible pathway into the mechanics of fluids and transport processes at the micrometer scale, starting with fundamental concepts and moving to real-world applications.
You will begin with essential terminology, learning how surface forces dominate over volumetric forces as dimensions decrease. Through structured written explanations, you will explore the governing equations of microfluidics, electrokinetic transport, and microscale heat transfer, gaining the analytical tools needed to evaluate miniature systems.
What you'll learn:
- Understand the physical scaling laws that govern transport processes at the microscale
- Analyze microfluidic flow behavior using the Navier-Stokes equations under low Reynolds number conditions
- Evaluate electrokinetic phenomena, including electroosmosis and electrophoresis, in capillary systems
- Apply principles of microscale heat transfer to design efficient cooling solutions for microelectronics
- Learn how diffusion and mass transport operate in microchannels for chemical and biological analysis
- Examine modern microfluidic applications, including lab-on-a-chip devices and microreactors
This text-based course is structured to build your knowledge logically, starting with basic fluid mechanics and scaling analysis before progressing to complex coupled transport phenomena. You will work through detailed theoretical derivations and conceptual exercises to solidify your understanding.
This course is designed for engineering students, researchers, and professionals who are new to microfluidics and microscale transport. No prior experience in micro-nanotechnology is required, though a basic understanding of general physics and calculus will help you get the most out of the material.
Start reading today to master the physical principles that power modern microfluidic and lab-on-a-chip technologies.
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💸14 dagen retour Geen vragen
⚡Kort en gericht 2 u 48 min praktische inhoud
Voltooiingscertificaat
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