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S Apr 9, 2018 at 20:07 history bounty ended Artem Zefirov
S Apr 9, 2018 at 20:07 history notice removed Artem Zefirov
Apr 9, 2018 at 20:07 vote accept Artem Zefirov
Apr 9, 2018 at 10:43 comment added SPPearce I've adapted some code for using method of lines discretizing in $x$ rather than $t$ and put that in my answer
Apr 9, 2018 at 10:32 comment added SPPearce I don't know much about numerical methods, just what I've done before.
Apr 9, 2018 at 9:24 history tweeted twitter.com/StackMma/status/983274486937112576
Apr 9, 2018 at 9:04 comment added Artem Zefirov Some authors assert that discretization in t is possible and is better in some extent. Cause we are capable to make use an analytical solution for BVP having infinitive domain. In the book written by Gunter H. Meyer the discretization in t is used to deal with the diffusion equation in a finite domain.
Apr 9, 2018 at 5:30 comment added SPPearce So you are trying to use Method of Lines to discretize in $t$? Usually you discretize in $x$ instead, leaving a set of first order ODEs.
Apr 9, 2018 at 5:26 answer added SPPearce timeline score: 5
S Apr 8, 2018 at 19:26 history bounty started Artem Zefirov
S Apr 8, 2018 at 19:26 history notice added Artem Zefirov Canonical answer required
Apr 7, 2018 at 13:18 comment added Artem Zefirov No. The solution bursts at the right border. I've forgotten to attach another message to the question. Now, it's done.
Apr 7, 2018 at 13:18 history edited Artem Zefirov CC BY-SA 3.0
added 205 characters in body
Apr 7, 2018 at 12:16 comment added Michael E2 That's just a warning. Did the solution "match the boundary conditions poorly" or not?
Apr 7, 2018 at 9:27 history edited Artem Zefirov CC BY-SA 3.0
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Apr 6, 2018 at 19:17 history asked Artem Zefirov CC BY-SA 3.0