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Exhaust gas selective sensing using printed RF gas sensors – CARDIF
Exposure to toxic gases or volatile organic compounds affects public safety and health. With the Internet of Things, widescale roll-out of gas sensors becomes accessible in order to monitor and analyze the environment, in public or private spaces. CARDIF project aims for the development of devices printed on flexible substrates and based on transduction in the radiofrequency range.
Social Uses of War Ruins: Resilience, Commemorations and Heritage – RUINES
The purpose of the RUINES project is to analyse the evolution of political and social uses of wae ruines from 16th c. to the present day, as vehicles and symptoms of a systematic historical view characterised by the conversion of warlike events as tokens of a contemporary world that is essentially catastrophic and traumatic.. The central hypothesis is that the way in which societies relate to the vestiges of war says something about how they relate to the past.
Astronomical solution for the Mesozoic Era – AstroMeso
The AstroMeso project aims to go beyond the horizon of predictability of 60 Ma for the Solar System, and to provide the basis of an astronomical solution over the whole Mesozoic. This will only be possible by using the geological record as an input, in order to constrain the orbital solution. This will open a new era where the geological record will actually be used to retrieve the orbital evolution of the solar system.
Controlling ELECTROnic phase transitions in molecular materials by non-linear PHONonics – ELECTROPHONE
Electronique phase transitions in molecular materials controlled by non-linear phononic
Innovative analytical methodologies for biotherapeutics analysis in biological samples – MethAmAbs
Because the advent of mAbs is recent, the insights regarding their evolution after administration to the patient are limited. The clinical practice suggests that patients may respond differently to the treatment. To further improve the knowledge and adjust the dosage, it is important to implement a clinical follow-up of patients.To achieve this ambitious goal, an innovative CZE/MSMS method will be developed for the quantification and structural characterization of mAbs in biological samples.
coALescence and biofiLm in thIn GAp phoTObioreactoR – ALLIGATOR
The ALLIGATOR project aims at developping a new type of intensified photobioreactor via an increase of the volume productivity.<br />The proposed configuration consists in a thin-gap bubble column expected to enhance gas-liquid mass transfer and to favor mixing, while allowing high biomass concentration and ensuring light availability on the whole reactor thickness.
Origin and function of the pituitary generator of GH pulses – GH-Gen
The project addresses a critical function in humans and all vertebrates: how are build-up the pulsatile secretion of GH that regulates body growth and metabolism? Our working hypothesis is that the functional network organisation of pituitary GH-secreting somatotrophs decodes fast hypothalamic GHRH inputs in order to transmit this information as slowly-evolving waves of calcium oscillations which leads to circhoral GH pulses into the bloodstream
HYDrothermal sIntering : a Low temperature process for the densIfication of Ceramics – HYDILIC
Development of a low-cost, environmentally friendly, and efficient low-temperature sintering technology to overcome the current technological .bottlenecks encountered in the densification of high-performance ceramics.
Linguistic and Intercultural Mediations in a context of International Migrations – LIMINAL
What do the social spaces of migration do to languages? In what ways do languages challenge migration policies? How can we qualify the languages of migration, the «migralects«? These questions have mobilised the researchers of the LIMINAL programme from 2017 to 2021. On the Franco-Italian and Franco-British borders, in the camps and reception and accommodation centers, the team has developed an innovative methodology to account for a new pragmatics of the languages in migration context.
Development of atmospheric plasma Enhanced SPatial ATomiC layer deposition (SALD) for application to silicon Heterojunction solar cells – DESPATCH
a new deposition technology to make silicon heterojunction solar cells cheaper and more efficient.