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Feb 3, 2021 at 10:51 review Close votes
Feb 8, 2021 at 3:02
Feb 8, 2020 at 11:34 comment added Kevin67 I can show that $a$ is accretive and H-elliptic
Feb 8, 2020 at 11:33 history edited Kevin67 CC BY-SA 4.0
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Feb 7, 2020 at 6:25 history edited Kevin67 CC BY-SA 4.0
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Feb 7, 2020 at 6:23 comment added Kevin67 A,B,C are positive definite matrices
Feb 7, 2020 at 6:19 history edited Martin Sleziak CC BY-SA 4.0
MathJax: \operatorname
Feb 7, 2020 at 6:16 comment added Kevin67 $u_1=u$ and $u_2=\frac{\partial u}{\partial t}$ and $u_3=v$.
Feb 7, 2020 at 6:14 comment added Kevin67 I dont know what j,V,H,( , )_H and ( , )_V should be
Feb 7, 2020 at 6:10 comment added Kevin67 one can use the identity $$\int_\Omega \psi \nabla\cdot\mathbf{A} ~dV=\int_{\partial\Omega} \psi \mathbf{A}\cdot~d\mathbf{S}-\int_\Omega \nabla\psi\cdot\mathbf{A}~dV$$ to handle the inner products to cancel some terms.
Feb 6, 2020 at 17:23 history edited YCor CC BY-SA 4.0
moved question to main text, formatting; edited tags
Feb 6, 2020 at 16:58 history edited Kevin67 CC BY-SA 4.0
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Feb 6, 2020 at 16:40 history edited Kevin67 CC BY-SA 4.0
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Feb 6, 2020 at 16:31 history undeleted Kevin67
Nov 29, 2019 at 6:33 history deleted Kevin67 via Vote
Nov 29, 2019 at 6:11 history edited Kevin67 CC BY-SA 4.0
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Nov 28, 2019 at 6:38 comment added Martin Sleziak This seems to be the same question as How to use the form method to solve the partial differential equations? posted on Mathematics.
Nov 28, 2019 at 6:19 history edited Kevin67 CC BY-SA 4.0
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Nov 27, 2019 at 18:18 history edited Kevin67 CC BY-SA 4.0
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Nov 27, 2019 at 17:19 history edited Kevin67 CC BY-SA 4.0
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Nov 27, 2019 at 16:58 history edited Kevin67 CC BY-SA 4.0
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Nov 27, 2019 at 11:32 history edited Kevin67 CC BY-SA 4.0
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Nov 27, 2019 at 11:00 review Close votes
Nov 29, 2019 at 6:35
Nov 27, 2019 at 10:46 comment added Kevin67 I want to use Theorem 5.7 page 53.
Nov 27, 2019 at 10:46 comment added Kevin67 The lecture i use is mat.tuhh.de/veranstaltungen/isem18/pdf/LectureNotes.pdf.
Nov 27, 2019 at 10:40 review First posts
Nov 27, 2019 at 11:13
Nov 27, 2019 at 10:37 history asked Kevin67 CC BY-SA 4.0