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name: C. Giverso name: C. Giverso
fullname: Chiara Giverso fullname: Chiara Giverso
home: https://www.disma.polito.it/en/personale/scheda/(nominativo)/chiara.giverso/ home: https://www.disma.polito.it/en/personale/scheda/(nominativo)/chiara.giverso/
os:
name: O. Schnürer
fullname: Oliver Schnürer
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
# Education and research # Education and research
|-:|:-| |-:|:-|
|2021-...|**Postdoc**, University of Constance (Germany), upcoming. With <a href="{{authors['rr'].home}}">{{authors['rr'].fullname}}</a> | |2021-...|**Postdoc**, University of Constance (Germany), in the group of <a href="{{authors['os'].home}}">{{authors['os'].fullname}}</a> |
|2018-2021|**Postdoc**, RICAM *Asymptotic flow-gradient structures for crowd motion*. With <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> | |2018-2021|**Postdoc**, RICAM *Asymptotic flow-gradient structures for crowd motion*. With <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> |
|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> | |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> |
|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> | |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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# Formation et recherche # Formation et recherche
|-:|:-| |-:|:-|
|2021-...|**Postdoc**, Université de Constance (Allemagne). Avec <a href="{{authors['rr'].home}}">{{authors['rr'].fullname}}</a> | |2021-...|**Postdoc**, Université de Constance (Allemagne) dans le groupe d'<a href="{{authors['os'].home}}">{{authors['os'].fullname}}</a> |
|2018-|**Postdoc**, RICAM *Structures de flots-gradient asymptotiques dans le cadre du traffic piétonnier*. Avec <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> | |2018-|**Postdoc**, RICAM *Structures de flots-gradient asymptotiques dans le cadre du traffic piétonnier*. Avec <a href="{{authors['mtw'].home}}">{{authors['mtw'].fullname}}</a> |
|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> | |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> |
|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> | |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; }
table.bordered { border-collapse: collapse; margin: 1em 0; } table.bordered { border-collapse: collapse; margin: 1em 0; }
table.bordered tr { border-top: 1px solid #bbb; border-bottom: 1px solid #bbb; } table.bordered tr { border-top: 1px solid #bbb; border-bottom: 1px solid #bbb; }
details { margin-top: 1em; padding: 0.5em; background-color: #fff; }
details[open] summary { margin-bottom: 1em; }
:target { color: #5151ff; background-color: yellow; } :target { color: #5151ff; background-color: yellow; }
.non_full { width: auto; } .non_full { width: auto; }

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--- ---
{::options parse_block_html="true" /} {::options parse_block_html="true" /}
# Wintersemester 2022 # Sommersemester 2023
## PDE III: Regularitätstheorie, De Giorgi-Nash-Moser
- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1491669.html)
- [Skript](https://gaspard.janko.fr/s/enseignement/konstanz/SoSe2023/PDE3/PDE3-DeGiorgiNashMoser.pdf) (auch auf ILIAS)
- **Termine**: Mittwoch um 15:15 Uhr, Raum D436
## Seminar: Keller-Segel Modelle: Langzeitverhalten
- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1559853.html)
- **Termine**: Freitag um 10:00 Uhr, Raum D436
# Vergangene Semester
<details>
<summary markdown="span" id="wintersemester2022">Wintersemester 2022</summary>
[Differentialgeometrie III](#differentialgeometrie-iii) · [Partielle Differentialgleichungen II](#partielle-differentialgleichungen-ii) [Differentialgeometrie III](#differentialgeometrie-iii) · [Partielle Differentialgleichungen II](#partielle-differentialgleichungen-ii)
{% include_relative WiSe2022/DG3.markdown %} {% include_relative WiSe2022/DG3.markdown %}
{% include_relative WiSe2022/PDE2.markdown %} {% include_relative WiSe2022/PDE2.markdown %}
</details>
# Vergangene Semester
<details> <details>
<summary markdown="span">Sommersemester 2022</summary> <summary markdown="span" id="sommersemester2022">Sommersemester 2022</summary>
# Sommersemester 2022
[Seminar](#seminar-geometrische-analysis) · [Differentialgeometrie II](#differentialgeometrie-ii) · [Funktionalanalysis II](#funktionalanalysis-ii) [Seminar Geometrische Analysis](#seminar-geometrische-analysis) · [Differentialgeometrie II](#differentialgeometrie-ii) · [Funktionalanalysis II](#funktionalanalysis-ii)
{% include_relative SoSe2022/Seminar_GA.markdown %} {% include_relative SoSe2022/Seminar_GA.markdown %}
@ -29,9 +41,7 @@ lang: de
</details> </details>
<details> <details>
<summary markdown="span">Wintersemester 2021</summary> <summary markdown="span" id="wintersemester2021">Wintersemester 2021</summary>
# Wintersemester 2021
[Gew. DG mit geometrischen Anwendungen](#gdg-mit-geometrischen-anwendungen) · [Theorie PDGs](#theorie-und-numerik-pdgs) [Gew. DG mit geometrischen Anwendungen](#gdg-mit-geometrischen-anwendungen) · [Theorie PDGs](#theorie-und-numerik-pdgs)

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--- ---
{% assign authors = site.data.authors %} {% assign authors = site.data.authors %}
<p id="info"><a href="/images/portrait_large.jpg"><img alt="src" src="/images/portrait.png" id="portrait"></a><span> <p id="info"><a href="/images/portrait_large.jpg"><img alt="src" src="/images/portrait.png" id="portrait"></a><span id="resume">
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. 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>.
I work on designing and analyzing models in the context of crowd motion and cell biology, including membranes of crawling lymphocytes.
In the case I study more specifically, this leads to gradient-flows which govern the evolution of rheologically nonhomogeneous curves on the plane.
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. 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.
This also leads me to study some related functional inequalities.</span></p> This also leads me to study some related functional inequalities.</span></p>
# PhD thesis
Asymptotic study of non linear diffusion type PDEs and related functional inequalities ([TEL](https://tel.archives-ouvertes.fr/tel-01067226))
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.
# Research # Research
* Modelling: biological membranes and crowd motion * Modelling: biological membranes and crowd motion
* Asymptotic behaviour for non linear diffusion * Asymptotic behaviour for non linear diffusion
@ -56,6 +52,12 @@ Supervisor: <a href="{{authors['jd'].home}}">{{authors['jd'].fullname}}</a>. Wri
Applieds PDEs for Life Sciences &ndash; Barcelona Applieds PDEs for Life Sciences &ndash; Barcelona
([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))
# PhD thesis
Asymptotic study of non linear diffusion type PDEs and related functional inequalities ([TEL](https://tel.archives-ouvertes.fr/tel-01067226))
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.
# Contact # Contact
Gaspard Jankowiak Gaspard Jankowiak
**@** <span>gaspard</span><span></span>@<span>math.janko.fr</span> **@** <span>gaspard</span><span></span>@<span>math.janko.fr</span>

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@ -7,49 +7,65 @@ fr_url: /enseignement/
--- ---
{::options parse_block_html="true" /} {::options parse_block_html="true" /}
# Constance (in German) # Constance
# Winter semester 2022 ## Summer semester 2023
## PDE III: Regularity Theory, The Theorem of De Giorgi, Nash and Moser
- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1491669.html)
- [Lecture notes](https://gaspard.janko.fr/s/enseignement/konstanz/SoSe2023/PDE3/PDE3-DeGiorgiNashMoser.pdf), in progress (also available on ILIAS)
- Time: Wednesdays at 15:15, Room D436
## Seminar: Keller-Segel Models: Long-time Behaviour
- [ILIAS](https://ilias.uni-konstanz.de/goto_ILIASKONSTANZ_crs_1559853.html)
- Time: Fridays at 10:00, Room D436
## Past semesters (in German)
<details>
<summary markdown="span">Winter semester 2022</summary>
For details, see [the page in german](/de#wintersemester2022)
- Differential geometry III - Differential geometry III
- PDE II - PDE II
# Past semesters </details>
<details> <details>
<summary markdown="span">Summer semester 2022</summary> <summary markdown="span">Summer semester 2022</summary>
# Summer semester 2022
- Geometric analysis seminar For details, see [the page in german](/de#sommersemester2022)
- Differential geometry II
- Functional analysis II - Geometric analysis seminar (Gage and Hamilton, *The Heat Equation Shrinking Convex Plane Curves*)
- Differential geometry II (exercice classes)
- Functional analysis II (exercise classes)
</details> </details>
<details> <details>
<summary markdown="span">Winter semester 2021</summary> <summary markdown="span">Winter semester 2021</summary>
For details, see [the page in german](/de#wintersemester2021)
# Winter semester 2021 - ODEs with geometric applications (exercise classes)
- Theory of PDEs (exercise classes)
- ODEs with geometric applications
- Theory of PDEs
</details> </details>
# Paris-Dauphine (MIDO) (in French) # Paris-Dauphine (in French)
## 2013-2014 ## 2013-2014
### Numerical optimization ### Numerical optimization (exercise classes)
[Webpage](https://www.ceremade.dauphine.fr/~amic/enseignement/OptiNum2014/) for the practical, managed by Amic Frouvelle. [Webpage](https://www.ceremade.dauphine.fr/~amic/enseignement/OptiNum2014/) for the practical, managed by Amic Frouvelle.
## 2012-2013 ## 2012-2013
### Linear algebra ### Linear algebra (exercise classes)
* [Best of partiel 2012](/files/al3/bop-2012.pdf) * [Best of partiel 2012](/files/al3/bop-2012.pdf)
### Numerical optimization ### Numerical optimization (exercise classes)
* [Exercise sheet No.1](/files/opt/2013/TD1-2013.pdf): Finite differences, optimization in 1D. * [Exercise sheet No.1](/files/opt/2013/TD1-2013.pdf): Finite differences, optimization in 1D.
* Solution: [right FD](/files/opt/2013/diff_fin_droite.m) and [centered FD](/files/opt/2013/diff_fin_centre.m) * Solution: [right FD](/files/opt/2013/diff_fin_droite.m) and [centered FD](/files/opt/2013/diff_fin_centre.m)
* Exercise sheet No.2: [sheet](/files/opt/2013/TD2-2013.pdf), * Exercise sheet No.2: [sheet](/files/opt/2013/TD2-2013.pdf),
@ -57,14 +73,14 @@ fr_url: /enseignement/
* Practical No.2 bis: [archive](/files/opt/2013/tp2bis.tar.gz), [sheet](/files/opt/2013/TP2bis-2013.pdf): Signal separation * Practical No.2 bis: [archive](/files/opt/2013/tp2bis.tar.gz), [sheet](/files/opt/2013/TP2bis-2013.pdf): Signal separation
* Exercise sheet No.3: [sheet](/files/opt/2013/TD3-2013.pdf): _Inpainting_ * Exercise sheet No.3: [sheet](/files/opt/2013/TD3-2013.pdf): _Inpainting_
* Practical No.3: [sheet](/files/opt/2013/TP3-2013.pdf), [archive](/files/opt/2013/tp3.tar.gz) * Practical No.3: [sheet](/files/opt/2013/TP3-2013.pdf), [archive](/files/opt/2013/tp3.tar.gz)
* Practicalolution](/files/opt/2013/CC1_correction.pdf) to the exam from 6th march 2013 * [Solution](/files/opt/2013/CC1_correction.pdf) to the exam from 6th march 2013
## 2011-2012 ## 2011-2012
### Linear algebra ### Linear algebra (exercise classes)
* [Sheet No.2 ex. 20](/files/al3/exo20.pdf) Projection on the spaces of scalar and diagonal matrices. * [Sheet No.2 ex. 20](/files/al3/exo20.pdf) Projection on the spaces of scalar and diagonal matrices.
### Numerical optimization ### Numerical optimization (exercise classes)
* [Solution](/files/opt/2012/corrige_cc.pdf) to the exam from 15th march 2012 * [Solution](/files/opt/2012/corrige_cc.pdf) to the exam from 15th march 2012
* [Exercise sheet No.1](/files/opt/2012/td1.pdf): Differential calculus: reminder * [Exercise sheet No.1](/files/opt/2012/td1.pdf): Differential calculus: reminder
* [Exercise sheet No.2](/files/opt/2012/tp22012.pdf): Portfolio optimization * [Exercise sheet No.2](/files/opt/2012/tp22012.pdf): Portfolio optimization
@ -72,6 +88,6 @@ fr_url: /enseignement/
## 2010-2011 ## 2010-2011
### Linear algebra ### Linear algebra (exercise classes)
* [Extra exercise sheet](/files/al3/al3_supp.pdf) EV products, interpolation, equivalence of norms, * [Extra exercise sheet](/files/al3/al3_supp.pdf) EV products, interpolation, equivalence of norms,
induced norm, matrix-norm, orthogonal polynomials, Fredholm alternative, projectors, least-squares. induced norm, matrix-norm, orthogonal polynomials, Fredholm alternative, projectors, least-squares.

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{% assign authors = site.data.authors %} {% assign authors = site.data.authors %}
<p id="info"><a href="/images/portrait_large.jpg"><img alt="portrait" src="/images/portrait.png" id="portrait"></a><span id="resume"> <p id="info"><a href="/images/portrait_large.jpg"><img alt="portrait" src="/images/portrait.png" id="portrait"></a><span id="resume">
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. 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>.
Je travaille sur la formulation et l'analyse de modèles pour les déplacements piétonniers et la biologie, et plus particulièrement la membrane de lymphocytes.
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.
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. 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.
Ceci m'amène aussi à étudier certaines inégalités fonctionnelles qui leur sont associées.</span></p> Ceci m'amène aussi à étudier certaines inégalités fonctionnelles qui leur sont associées.</span></p>
# 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.
# Recherche # Recherche
* Modelisation: membranes biologiques et mouvements de foule * 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 &ndash; Barcelone - septembre 2012, *Study of two crowd motion and herding models*, Applieds PDEs for Life Sciences &ndash; 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))
# 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