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I wish to sort the priority of the suggestions related to scalar_dynam.md lecture. Here are the details.
High priority (can be resolved by myself)
21.1 - State that 1-δ is an assumption of the model
21.1 - Explain what α is
21.1 - Clarify the derivation of ( k_{t+1} ) by write out an extra step of dividing both step by L
Low priority (need further discussion)
Change the order of the lectures 21. The Solow-Swan Growth Model and 22. Dynamics in One Dimension
21.2 - Include a comparative study to see changes in the shape of the model as A or K changes
21.3 - Might consider giving some further exploitation for the diagram in this section
Remove the discussion of the Solow-Swan model from Dynamics in One Dimension (ie. Section 22.4), refer an example to the Solow-Swan Growth Model lecture
22.2.2 - add an explanation about what "sending a set S back onto itself" means, ie. by graphing the examples and by mentioning that if x is in S, then g(x) will also be in S
22.3.1 - add further explanation about the steady state conditions for the simple model presented, ie. that the model simplifies if a = 1 and b = 0
Add a summarising paragraph --> broader link to chaotic dynamics through the trajectories (ie. period-n cycles)
What do you think about this classification? Would you like to change anything?
Best ❤️
Longye
The text was updated successfully, but these errors were encountered:
Dear John @jstac ,and Matt @mmcky ,
I wish to sort the priority of the suggestions related to scalar_dynam.md lecture. Here are the details.
High priority (can be resolved by myself)
Low priority (need further discussion)
What do you think about this classification? Would you like to change anything?
Best ❤️
Longye
The text was updated successfully, but these errors were encountered: