# Searching for "law"

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• #### Reading - 1.2.1 Fourier and Fick’s law in different geometries

In chapter 2 of this week, we will continue with the microbalances in transport phenomena. We will expand the microbalance...
• #### Reading - 4.2 Fick’s law: ending

Great! You have now seen the similarities between Fourier's and Fick's Law. Seeing these similarities makes it simpler to understand...
• #### Reading - 4.2 Fick’s law: introduction

During this chapter, we will introduce you to Fick's Law. You'll notice that there is a stunning similarity between Fick’s and Fourier’s...
• #### Reading - 4.1 Fourier’s law: ending

In conclusion, Fourier’s law can be used in order to obtain the heat flow through simple geometries. You should now...
• #### Reading - 4.1 Fourier’s law: introduction

Welcome back to another week of Transport Phenomena! This week we will take a look at heat and mass transfer....
• #### Reading - 3.2 Stokes’ law: ending

In this subsection, you have met Stokes' law and have learned to apply this law to situations for spherical shapes...
• #### Reading - 3.2 Stokes’ law: introduction

As you have seen in the previous section, the drag force is very much dependent on the shape of an...
• #### Reading - 2.3 The mechanical energy balance Bernoulli’s law: ending

Well done! You have arrived at the end of this subsection, which is also the end of this module. By doing...
• #### Reading - 2.3 The mechanical energy balance Bernoulli’s law: introduction

Since you have already been introduced to the world of energy balances, we are going to dive somewhat deeper into...
• #### Exercise - 4.2 Fick’s law: exercise 2 (example)

Assume that you have an aquarium, quite like the one shown below: the top of the tank is open and...