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Michel Tsamados

Researcher at University College London

Publications -  75
Citations -  2311

Michel Tsamados is an academic researcher from University College London. The author has contributed to research in topics: Sea ice & Arctic ice pack. The author has an hindex of 20, co-authored 60 publications receiving 1448 citations. Previous affiliations of Michel Tsamados include University of Reading & University of Lyon.

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Local elasticity map and plasticity in a model Lennard-Jones glass.

TL;DR: This work calculates the local elastic moduli in a weakly polydispersed two-dimensional Lennard-Jones glass undergoing a quasistatic shear deformation at zero temperature and shows that zones of low shear modulus concentrate most of the strain in the form of plastic rearrangements.
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September Arctic sea-ice minimum predicted by spring melt-pond fraction

TL;DR: In this article, the authors used spring melt-pond area to forecast the Arctic sea-ice minimum in September and found a strong correlation between the spring pond fraction and September sea ice extent.
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Impact of Variable Atmospheric and Oceanic Form Drag on Simulations of Arctic Sea Ice

TL;DR: In this article, the authors combine theoretical developments to deduce the total neutral form drag coefficients from properties of the ice cover such as ice concentration, vertical extent and area of the ridges, freeboard and floe draft, and the size of floes and melt ponds.
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Altimetry for the future: building on 25 years of progress

Saleh Abdalla, +360 more
TL;DR: In 2018, the 25th year of development of radar altimetry was celebrated and the progress achieved by this methodology in the fields of global and coastal oceanography, hydrology, geodesy and cryospheric sciences as discussed by the authors.
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Vibrational modes as a predictor for plasticity in a model glass

TL;DR: In this article, the shape of the localized vibrational modes of a model Lennard-Jones glass is directly related to the spatial organization of the plastic rearrangements, which can be used as a predictor for plastic activity.