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Title
The Basics of Transport Phenomena
Category
general
UUID
efa750c24bb64c3a8a4d81b1be4a9595
Source URL
https://learningforlife.tudelft.nl/the-basics-of-transport-phenomena/
Parent URL
https://learningforlife.tudelft.nl/our-courses/core-stem-skills/physics-chemistr...
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2026-03-23T11:26:53+00:00
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# The Basics of Transport Phenomena

**Source**: https://learningforlife.tudelft.nl/the-basics-of-transport-phenomena/
**Parent**: https://learningforlife.tudelft.nl/our-courses/core-stem-skills/physics-chemistry/

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- Identify heat transfer, mass transfer and fluid flow phenomena in lab, industrial and daily environment.
- Identify quantities and subjects used in transport phenomena.
- Use balances to solve problems.
- Apply the concepts of transport phenomena to a variety of real life problems.
- Make the correct assumptions to put real-life situations into mathematical model.
- Solve and assess a model from a quantitative perspective.

Free

- Type
  Course
- Location
  Online
- Pacing
  Starts anytime / Self-paced
- Length

  For instructor paced courses this is the length of the course.

  For self-paced courses this is the length of the course if you spend the amount of time per week as specified. You're free to go faster or slower as you see fit.

  7 Weeks
- Effort
  6 - 8 Hours per week

[Enroll on edX](https://www.edx.org/course/the-basics-of-transport-phenomena)

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- [Transport Phenomena](https://learningforlife.tudelft.nl/transport-phenomena/)

- [Robert Mudde](https://learningforlife.tudelft.nl/instructors/robert-mudde/)
- [Peter Hamersma](https://learningforlife.tudelft.nl/instructors/peter-hamersma/)

- Overview

  **Learn the basic framework to work on a broad spectrum of engineering problems concerning transfer of heat, mass and momentum. Learn through examples of everyday processes at home, in the lab and in industry.**

  Have you ever wondered why ventilation helps to cool down your hot chocolate? Do you know why a surfing suit keeps you warm? Why iron feels cold, while wood feels warm at room temperature? Or how air is transferred into aqueous liquids in a water treatment plant? How can we sterilize milk with the least amount of energy? How does medicine spread in our tissue? Or how do we design a new cooling tower of a power plant? All these are phenomena that involve heat transfer, mass transfer or fluid flow.

  Transport Phenomena investigates such questions and many others, exploring a wide variety of applications ranging from industrial processes to environmental engineering, to transport processes in our own body and even simple daily life problems

  In this course we will look into the underlying concepts of these processes, that often take place simultaneously, and will teach you how to apply them to a variety of real-life problems. You will learn how to model the processes and make quantitative statements.

  ##### What you'll learn

  - Identify heat transfer, mass transfer and fluid flow phenomena in lab, industrial and daily environment.
  - Identify quantities and subjects used in transport phenomena.
  - Use balances to solve problems.
  - Apply the concepts of transport phenomena to a variety of real life problems.
  - Make the correct assumptions to put real-life situations into mathematical model.
  - Solve and assess a model from a quantitative perspective.
  - See the world through different eyes.

  ##### Quotes on this course

  *"The lecture videos are awesome - short and straight to the point. Your exercises are very interesting and I enjoy solving them."*\
  \
  *"If every course in TU Delft is similarly amazing, then it is definitely one of the best universities in the world to study engineering."*
- Qualifications

  ##### Chartered Engineering Competences

  All our online courses and programs have been matched to the competences determined by [KIVI’s Competence Structure](https://charteredengineer.nl/competence-structure/), a common frame of reference for everyone, across all disciplines, levels and roles.

  These competences apply to this course:

  - A1: Extend your theoretical knowledge of new and advancing technologies.
- Admission

  This is a Massive Open Online Course (MOOC) that runs on edX. High School physics and basic knowledge of calculus (derivative, integral, simple differential equations) and thermodynamics (concepts of first law and second law, properties of fluids, heat effects) are required.

- Course format: MOOC

  **This course is a Massive Open Online Course (MOOC)**. Our MOOCs are delivered on edX.org and are open to all. They include video lectures, readings, assignments, and community discussions. Content is free, with optional certificates and additional exercises available for a fee.

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