overhaul
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@ -140,3 +140,8 @@ cg:
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name: C. Giverso
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name: C. Giverso
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fullname: Chiara Giverso
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fullname: Chiara Giverso
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home: https://www.disma.polito.it/en/personale/scheda/(nominativo)/chiara.giverso/
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home: https://www.disma.polito.it/en/personale/scheda/(nominativo)/chiara.giverso/
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os:
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name: O. Schnürer
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fullname: Oliver Schnürer
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home: https://www.math.uni-konstanz.de/~schnuere/
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@ -8,7 +8,7 @@ Non linear diffusion equations (fast diffusion equation), long time behaviour of
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# Education and research
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# Education and research
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|-:|:-|
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|-:|:-|
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|2021-...|**Postdoc**, University of Constance (Germany), upcoming. With <a href="{{authors['rr'].home}}">{{authors['rr'].fullname}}</a> |
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|2021-...|**Postdoc**, University of Constance (Germany), in the group of <a href="{{authors['os'].home}}">{{authors['os'].fullname}}</a> |
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|2018-2021|**Postdoc**, RICAM *Asymptotic flow-gradient structures for crowd motion*. With <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> |
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|2018-2021|**Postdoc**, RICAM *Asymptotic flow-gradient structures for crowd motion*. With <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> |
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|2015-2018|**Postdoc**, RICAM / University of Vienna (Austria),<br>*Analysis and modelling of cell membranes with constrained curvature minimisation*. With <a href="{{authors['cs'].home}}">{{authors['cs'].fullname}}</a> |
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|2015-2018|**Postdoc**, RICAM / University of Vienna (Austria),<br>*Analysis and modelling of cell membranes with constrained curvature minimisation*. With <a href="{{authors['cs'].home}}">{{authors['cs'].fullname}}</a> |
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|2014-2015|**Postdoc**, LMB - Université de Franche-Comté,<br>*Multiscale finite element methods for the Stokes equation*. With <a href="{{authors['al'].home}}">{{authors['al'].fullname}}</a> |
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|2014-2015|**Postdoc**, LMB - Université de Franche-Comté,<br>*Multiscale finite element methods for the Stokes equation*. With <a href="{{authors['al'].home}}">{{authors['al'].fullname}}</a> |
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@ -8,7 +8,7 @@
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# Formation et recherche
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# Formation et recherche
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|-:|:-|
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|-:|:-|
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|2021-...|**Postdoc**, Université de Constance (Allemagne). Avec <a href="{{authors['rr'].home}}">{{authors['rr'].fullname}}</a> |
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|2021-...|**Postdoc**, Université de Constance (Allemagne) dans le groupe d'<a href="{{authors['os'].home}}">{{authors['os'].fullname}}</a> |
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|2018-|**Postdoc**, RICAM *Structures de flots-gradient asymptotiques dans le cadre du traffic piétonnier*. Avec <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> |
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|2018-|**Postdoc**, RICAM *Structures de flots-gradient asymptotiques dans le cadre du traffic piétonnier*. Avec <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> |
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|2015-2018|**Postdoc**, RICAM / Université de Vienne (Autriche),<br>*Analyse et modélisation de l'évolution de la membrane cellulaire par minimisation de courbure sous contraintes*. Avec <a href="{{authors['cs'].home}}">{{authors['cs'].fullname}}</a> |
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|2015-2018|**Postdoc**, RICAM / Université de Vienne (Autriche),<br>*Analyse et modélisation de l'évolution de la membrane cellulaire par minimisation de courbure sous contraintes*. Avec <a href="{{authors['cs'].home}}">{{authors['cs'].fullname}}</a> |
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|2014-2015|**Postdoc**, LMB - Université de Franche-Comté,<br>*Méthode des éléments finis multiéchelle pour l'équation de Stokes*. Avec <a href="{{authors['al'].home}}">{{authors['al'].fullname}}</a> |
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|2014-2015|**Postdoc**, LMB - Université de Franche-Comté,<br>*Méthode des éléments finis multiéchelle pour l'équation de Stokes*. Avec <a href="{{authors['al'].home}}">{{authors['al'].fullname}}</a> |
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@ -104,6 +104,10 @@ tr { border-bottom: 1px dotted $tr-rule; }
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table.bordered { border-collapse: collapse; margin: 1em 0; }
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table.bordered { border-collapse: collapse; margin: 1em 0; }
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table.bordered tr { border-top: 1px solid #bbb; border-bottom: 1px solid #bbb; }
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table.bordered tr { border-top: 1px solid #bbb; border-bottom: 1px solid #bbb; }
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details { margin-top: 1em; padding: 0.5em; background-color: #fff; }
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details[open] summary { margin-bottom: 1em; }
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:target { color: #5151ff; background-color: yellow; }
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:target { color: #5151ff; background-color: yellow; }
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.non_full { width: auto; }
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.non_full { width: auto; }
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@ -5,21 +5,33 @@ lang: de
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---
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---
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{::options parse_block_html="true" /}
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{::options parse_block_html="true" /}
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# Wintersemester 2022
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# Sommersemester 2023
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## PDE III: Regularitätstheorie, De Giorgi-Nash-Moser
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- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1491669.html)
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- [Skript](https://gaspard.janko.fr/s/enseignement/konstanz/SoSe2023/PDE3/PDE3-DeGiorgiNashMoser.pdf) (auch auf ILIAS)
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- **Termine**: Mittwoch um 15:15 Uhr, Raum D436
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## Seminar: Keller-Segel Modelle: Langzeitverhalten
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- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1559853.html)
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- **Termine**: Freitag um 10:00 Uhr, Raum D436
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# Vergangene Semester
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<details>
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<summary markdown="span" id="wintersemester2022">Wintersemester 2022</summary>
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[Differentialgeometrie III](#differentialgeometrie-iii) · [Partielle Differentialgleichungen II](#partielle-differentialgleichungen-ii)
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[Differentialgeometrie III](#differentialgeometrie-iii) · [Partielle Differentialgleichungen II](#partielle-differentialgleichungen-ii)
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{% include_relative WiSe2022/DG3.markdown %}
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{% include_relative WiSe2022/DG3.markdown %}
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{% include_relative WiSe2022/PDE2.markdown %}
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{% include_relative WiSe2022/PDE2.markdown %}
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</details>
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# Vergangene Semester
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<details>
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<details>
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<summary markdown="span">Sommersemester 2022</summary>
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<summary markdown="span" id="sommersemester2022">Sommersemester 2022</summary>
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# Sommersemester 2022
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[Seminar](#seminar-geometrische-analysis) · [Differentialgeometrie II](#differentialgeometrie-ii) · [Funktionalanalysis II](#funktionalanalysis-ii)
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[Seminar Geometrische Analysis](#seminar-geometrische-analysis) · [Differentialgeometrie II](#differentialgeometrie-ii) · [Funktionalanalysis II](#funktionalanalysis-ii)
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{% include_relative SoSe2022/Seminar_GA.markdown %}
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{% include_relative SoSe2022/Seminar_GA.markdown %}
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</details>
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</details>
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<details>
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<details>
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<summary markdown="span">Wintersemester 2021</summary>
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<summary markdown="span" id="wintersemester2021">Wintersemester 2021</summary>
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# Wintersemester 2021
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[Gew. DG mit geometrischen Anwendungen](#gdg-mit-geometrischen-anwendungen) · [Theorie PDGs](#theorie-und-numerik-pdgs)
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[Gew. DG mit geometrischen Anwendungen](#gdg-mit-geometrischen-anwendungen) · [Theorie PDGs](#theorie-und-numerik-pdgs)
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---
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---
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{% assign authors = site.data.authors %}
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{% assign authors = site.data.authors %}
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<p id="info"><a href="/images/portrait_large.jpg"><img alt="src" src="/images/portrait.png" id="portrait"></a><span>
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<p id="info"><a href="/images/portrait_large.jpg"><img alt="src" src="/images/portrait.png" id="portrait"></a><span id="resume">
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Currently, I am a postdoc at the <a href="https://uni.kn/">University of Constance</a>, where I am working with <a href="{{authors['rr'].home}}">{{authors['rr'].fullname}}</a>. I previously worked on designing and analyzing models in the context of crowd motion and cell biology, including membranes of crawling lymphocytes.
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Currently, I am a postdoc at the <a href="https://uni.kn/">University of Constance</a> in the group of <a href="{{authors['os'].home}}">{{authors['os'].fullname}}</a>.
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I work on designing and analyzing models in the context of crowd motion and cell biology, including membranes of crawling lymphocytes.
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In the case I study more specifically, this leads to gradient-flows which govern the evolution of rheologically nonhomogeneous curves on the plane.
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More generally, I am also interested in analysis of non linear PDEs, of drift-diffusion type in particular, just like the Keller and Segel model for chemotaxis.
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More generally, I am also interested in analysis of non linear PDEs, of drift-diffusion type in particular, just like the Keller and Segel model for chemotaxis.
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This also leads me to study some related functional inequalities.</span></p>
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This also leads me to study some related functional inequalities.</span></p>
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# PhD thesis
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Asymptotic study of non linear diffusion type PDEs and related functional inequalities ([TEL](https://tel.archives-ouvertes.fr/tel-01067226))
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Supervisor: <a href="{{authors['jd'].home}}">{{authors['jd'].fullname}}</a>. Written within <a href="http://www.ceremade.dauphine.fr/">Ceremade</a>, and defended on June 23, 2014.
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# Research
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# Research
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* Modelling: biological membranes and crowd motion
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* Modelling: biological membranes and crowd motion
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* Asymptotic behaviour for non linear diffusion
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* Asymptotic behaviour for non linear diffusion
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Applieds PDEs for Life Sciences – Barcelona
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Applieds PDEs for Life Sciences – Barcelona
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([pdf](/files/research/posters/2012/2012_barcelona.pdf)|[source](/files/research/posters/2012/2012_barcelona.tar.gz))
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([pdf](/files/research/posters/2012/2012_barcelona.pdf)|[source](/files/research/posters/2012/2012_barcelona.tar.gz))
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# PhD thesis
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Asymptotic study of non linear diffusion type PDEs and related functional inequalities ([TEL](https://tel.archives-ouvertes.fr/tel-01067226))
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Supervisor: <a href="{{authors['jd'].home}}">{{authors['jd'].fullname}}</a>. Written within <a href="http://www.ceremade.dauphine.fr/">Ceremade</a>, and defended on June 23, 2014.
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# Contact
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# Contact
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Gaspard Jankowiak
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Gaspard Jankowiak
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**@** <span>gaspard</span><span></span>@<span>math.janko.fr</span>
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**@** <span>gaspard</span><span></span>@<span>math.janko.fr</span>
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---
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---
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{::options parse_block_html="true" /}
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{::options parse_block_html="true" /}
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# Constance (in German)
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# Constance
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# Winter semester 2022
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## Summer semester 2023
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## PDE III: Regularity Theory, The Theorem of De Giorgi, Nash and Moser
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- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1491669.html)
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- [Lecture notes](https://gaspard.janko.fr/s/enseignement/konstanz/SoSe2023/PDE3/PDE3-DeGiorgiNashMoser.pdf), in progress (also available on ILIAS)
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- Time: Wednesdays at 15:15, Room D436
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## Seminar: Keller-Segel Models: Long-time Behaviour
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- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1559853.html)
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- Time: Fridays at 10:00, Room D436
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## Past semesters (in German)
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<details>
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<summary markdown="span">Winter semester 2022</summary>
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For details, see [the page in german](/de#wintersemester2022)
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- Differential geometry III
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- Differential geometry III
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- PDE II
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- PDE II
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# Past semesters
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</details>
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<details>
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<details>
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<summary markdown="span">Summer semester 2022</summary>
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<summary markdown="span">Summer semester 2022</summary>
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# Summer semester 2022
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- Geometric analysis seminar
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For details, see [the page in german](/de#sommersemester2022)
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- Differential geometry II
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- Functional analysis II
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- Geometric analysis seminar (Gage and Hamilton, *The Heat Equation Shrinking Convex Plane Curves*)
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- Differential geometry II (exercice classes)
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- Functional analysis II (exercise classes)
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</details>
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</details>
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<details>
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<details>
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<summary markdown="span">Winter semester 2021</summary>
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<summary markdown="span">Winter semester 2021</summary>
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For details, see [the page in german](/de#wintersemester2021)
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# Winter semester 2021
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- ODEs with geometric applications (exercise classes)
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- Theory of PDEs (exercise classes)
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- ODEs with geometric applications
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- Theory of PDEs
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</details>
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</details>
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# Paris-Dauphine (MIDO) (in French)
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# Paris-Dauphine (in French)
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## 2013-2014
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## 2013-2014
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### Numerical optimization
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### Numerical optimization (exercise classes)
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[Webpage](https://www.ceremade.dauphine.fr/~amic/enseignement/OptiNum2014/) for the practical, managed by Amic Frouvelle.
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[Webpage](https://www.ceremade.dauphine.fr/~amic/enseignement/OptiNum2014/) for the practical, managed by Amic Frouvelle.
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## 2012-2013
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## 2012-2013
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### Linear algebra
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### Linear algebra (exercise classes)
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* [Best of partiel 2012](/files/al3/bop-2012.pdf)
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* [Best of partiel 2012](/files/al3/bop-2012.pdf)
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### Numerical optimization
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### Numerical optimization (exercise classes)
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* [Exercise sheet No.1](/files/opt/2013/TD1-2013.pdf): Finite differences, optimization in 1D.
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* [Exercise sheet No.1](/files/opt/2013/TD1-2013.pdf): Finite differences, optimization in 1D.
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* Solution: [right FD](/files/opt/2013/diff_fin_droite.m) and [centered FD](/files/opt/2013/diff_fin_centre.m)
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* Solution: [right FD](/files/opt/2013/diff_fin_droite.m) and [centered FD](/files/opt/2013/diff_fin_centre.m)
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* Exercise sheet No.2: [sheet](/files/opt/2013/TD2-2013.pdf),
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* Exercise sheet No.2: [sheet](/files/opt/2013/TD2-2013.pdf),
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* Practical No.2 bis: [archive](/files/opt/2013/tp2bis.tar.gz), [sheet](/files/opt/2013/TP2bis-2013.pdf): Signal separation
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* Practical No.2 bis: [archive](/files/opt/2013/tp2bis.tar.gz), [sheet](/files/opt/2013/TP2bis-2013.pdf): Signal separation
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* Exercise sheet No.3: [sheet](/files/opt/2013/TD3-2013.pdf): _Inpainting_
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* Exercise sheet No.3: [sheet](/files/opt/2013/TD3-2013.pdf): _Inpainting_
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* Practical No.3: [sheet](/files/opt/2013/TP3-2013.pdf), [archive](/files/opt/2013/tp3.tar.gz)
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* Practical No.3: [sheet](/files/opt/2013/TP3-2013.pdf), [archive](/files/opt/2013/tp3.tar.gz)
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* Practicalolution](/files/opt/2013/CC1_correction.pdf) to the exam from 6th march 2013
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* [Solution](/files/opt/2013/CC1_correction.pdf) to the exam from 6th march 2013
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## 2011-2012
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## 2011-2012
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### Linear algebra
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### Linear algebra (exercise classes)
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* [Sheet No.2 ex. 20](/files/al3/exo20.pdf) Projection on the spaces of scalar and diagonal matrices.
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* [Sheet No.2 ex. 20](/files/al3/exo20.pdf) Projection on the spaces of scalar and diagonal matrices.
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### Numerical optimization
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### Numerical optimization (exercise classes)
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* [Solution](/files/opt/2012/corrige_cc.pdf) to the exam from 15th march 2012
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* [Solution](/files/opt/2012/corrige_cc.pdf) to the exam from 15th march 2012
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* [Exercise sheet No.1](/files/opt/2012/td1.pdf): Differential calculus: reminder
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* [Exercise sheet No.1](/files/opt/2012/td1.pdf): Differential calculus: reminder
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* [Exercise sheet No.2](/files/opt/2012/tp22012.pdf): Portfolio optimization
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* [Exercise sheet No.2](/files/opt/2012/tp22012.pdf): Portfolio optimization
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## 2010-2011
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## 2010-2011
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### Linear algebra
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### Linear algebra (exercise classes)
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* [Extra exercise sheet](/files/al3/al3_supp.pdf) EV products, interpolation, equivalence of norms,
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* [Extra exercise sheet](/files/al3/al3_supp.pdf) EV products, interpolation, equivalence of norms,
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induced norm, matrix-norm, orthogonal polynomials, Fredholm alternative, projectors, least-squares.
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induced norm, matrix-norm, orthogonal polynomials, Fredholm alternative, projectors, least-squares.
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{% assign authors = site.data.authors %}
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{% assign authors = site.data.authors %}
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<p id="info"><a href="/images/portrait_large.jpg"><img alt="portrait" src="/images/portrait.png" id="portrait"></a><span id="resume">
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<p id="info"><a href="/images/portrait_large.jpg"><img alt="portrait" src="/images/portrait.png" id="portrait"></a><span id="resume">
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Actuellement postdoc à l'<a href="https://uni.kn/">Université de Constance</a>, je travaille avec <a href="{{authors['rr'].home}}">{{authors['rr'].fullname}}</a>. Précédemment, j'ai étudié la formulation et l'analyse de modèles pour les déplacements piétonniers et la biologie, et plus particulièrement la membrane de lymphocytes.
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Actuellement postdoc à l'<a href="https://uni.kn/">Université de Constance</a>, je travaille avec <a href="{{authors['rr'].home}}">{{authors['rr'].fullname}}</a>.
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Je travaille sur la formulation et l'analyse de modèles pour les déplacements piétonniers et la biologie, et plus particulièrement la membrane de lymphocytes.
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Dans le cas que j'étudie plus particulièrement, ceci mène à l'étude de flots-gradients régissant l'évolution de courbes non homogènes du point de vue de la rhéologie.
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Je m'intéresse plus généralement à l'analyse des EDP non linéaires, en particulier celle de type dérive-diffusion, comme le modèle de Keller et Segel pour la chimiotaxie.
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Je m'intéresse plus généralement à l'analyse des EDP non linéaires, en particulier celle de type dérive-diffusion, comme le modèle de Keller et Segel pour la chimiotaxie.
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Ceci m'amène aussi à étudier certaines inégalités fonctionnelles qui leur sont associées.</span></p>
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Ceci m'amène aussi à étudier certaines inégalités fonctionnelles qui leur sont associées.</span></p>
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# Thèse
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|
||||||
Étude asymptotique d'ÉDP de type diffusion non linéaire et inégalités fonctionnelles associées ([TEL](https://tel.archives-ouvertes.fr/tel-01067226))
|
|
||||||
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|
||||||
Préparée sous la direction de <a href="{{authors['jd'].home}}">{{authors['jd'].fullname}}</a> au <a href="http://www.ceremade.dauphine.fr/">Ceremade</a>, et soutenue le 23 juin 2014.
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|
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# Recherche
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# Recherche
|
||||||
* Modelisation: membranes biologiques et mouvements de foule
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* Modelisation: membranes biologiques et mouvements de foule
|
||||||
|
@ -56,6 +53,12 @@ Préparée sous la direction de <a href="{{authors['jd'].home}}">{{authors['jd']
|
||||||
- septembre 2012, *Study of two crowd motion and herding models*, Applieds PDEs for Life Sciences – Barcelone
|
- septembre 2012, *Study of two crowd motion and herding models*, Applieds PDEs for Life Sciences – Barcelone
|
||||||
([pdf](/files/research/posters/2012/2012_barcelona.pdf)|[source](/files/research/posters/2012/2012_barcelona.tar.gz))
|
([pdf](/files/research/posters/2012/2012_barcelona.pdf)|[source](/files/research/posters/2012/2012_barcelona.tar.gz))
|
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|
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# Thèse
|
||||||
|
|
||||||
|
Étude asymptotique d'ÉDP de type diffusion non linéaire et inégalités fonctionnelles associées ([TEL](https://tel.archives-ouvertes.fr/tel-01067226))
|
||||||
|
|
||||||
|
Préparée sous la direction de <a href="{{authors['jd'].home}}">{{authors['jd'].fullname}}</a> au <a href="http://www.ceremade.dauphine.fr/">Ceremade</a>, et soutenue le 23 juin 2014.
|
||||||
|
|
||||||
# Contact
|
# Contact
|
||||||
|
|
||||||
Gaspard Jankowiak
|
Gaspard Jankowiak
|
||||||
|
|
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Reference in a new issue