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I am interested in understanding the flow (or rherology) of complex systems. I have studied a wide range of materials from the atomic scale (glassy disordered materials) to the geophysical scale (sea ice). While often of fundamental nature my research is always intended to address practical challenges in both the field of material sciences and climate sciences. This dual approach in my research, fundamental and applied, is very clearly evidenced in my recent work in the construction and analysis of new mathematical models of physical processes in the sea ice component of the general circulation models (GCMs) which combines the development of fundamental new theory and numerical simulations with field measurements and remotely-sensed observations.
I am interested in understanding the flow (or rherology) of complex systems. I have studied a wide range of materials from the atomic scale (glassy disordered materials) to the geophysical scale (sea ice). While often of fundamental nature my research is always intended to address practical challenges in both the field of material sciences and climate sciences. This dual approach in my research, fundamental and applied, is very clearly evidenced in my recent work in the construction and analysis of new mathematical models of physical processes in the sea ice component of the general circulation models (GCMs) which combines the development of fundamental new theory and numerical simulations with field measurements and remotely-sensed observations.
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crossref(2024)
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Weibin Chen,Michel Tsamados,Rosemary Willatt,David Brockley, Marc Deisenroth, Claude De Rijke-Thomas, Alistair Francis, Len Hirata,Thomas Johnson,Isobel Lawrence,Jack Landy,Sanggyun Lee,
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William Gregory, Ronald MacEachern, So Takao,Isobel Lawrence, Carmen Nab, Mark Deisenroth,Michel Tsamados
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Valentin Ludwig, Carole Belot,Elodie Da Silva,Sara Fleury,Christian Haas,Stefan Hendricks, Eric Munesa, Javier Pastor,Stephan Paul,Michel Tsamados,Jérôme Bouffard,Alessandro Di Bella,
crossref(2024)
Ocean Modelling (2023): 102227-102227
CRYOSPHEREno. 9 (2023): 4103-4131
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