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Titlebook: Differential Equations for Studies in Computational Electrophysiology; Karoline Horgmo Jæger,Aslak Tveito Book‘‘‘‘‘‘‘‘ 2023 The Editor(s)

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Book‘‘‘‘‘‘‘‘ 2023ed to gain attention in the field of computational electrophysiology are also presented. If you just want to read .one. .book., it should probably not be this one, but if you want a simple introduction to a complex field, it is worth considering the present text..
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2512-1677 f you just want to read .one. .book., it should probably not be this one, but if you want a simple introduction to a complex field, it is worth considering the present text..978-3-031-30851-2978-3-031-30852-9Series ISSN 2512-1677 Series E-ISSN 2512-1685
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Book‘‘‘‘‘‘‘‘ 2023t covers models at several spatial and temporal scales with associated numerical methods. The text demonstrates that a very limited number of fundamental techniques can be used to define numerical methods for equations ranging from ridiculously simple to extremely complex systems of partial differen
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A Simple Cable Equationthe equation come about. But here, we will just take a simple version of the equations for granted and then try to solve them. We will observe that the few techniques we learned above are actually sufficient to solve the non-linear reaction-diffusion equations we consider here.
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https://doi.org/10.1007/978-3-658-42954-6and leaving it out of the model has consequences. For instance, it becomes impossible to investigate the detailed dynamics of the electrochemical processes in the vicinity of a small collection of cells.
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11.1.3 Cation radicals from silanes,ial equation and the numerical scheme approximating the equation. One nice consequence of this is that, as we saw above, we can explicitly study the error introduced by the numerical approximation. In this chapter, we will use the same approach to study the error of the numerical approximation of the diffusion equation.
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