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Searching for the ORigin of the DINoflagellates in the Acritarch Representatives – ORDINAR
We will combine organic geochemistry, micro-infra-red spectroscopy, culturing and genetic techniques, and microscopic analyses (optical, TEM, SEM) to determine the biological affinities and the macromolecular characteristics of individual microfossils, including acritarchs and dinoflagellates. Our study should resolve - at least partly - the question about the origin of the dinoflagellates, and the biological affinity of the acritarchs.
Matter of glacial origin and its fate in the ocean: a case study at Kerguelen – MARGO
study along the glacier-ocean continuum. The exceptional multidisciplinary knowledge that exists at Kerguelen
THE HOLOCENE ROCK ART OF THE IBERIAN MEDITERRANEAN BASIN: HOW YOU PAINT, WHO YOU ARE – HOLOGRAM
remain uncertain. Although this graphic record is exceptional in Prehistoric Europe– in terms of the number
Study the effect of environmental factors on asexual development in salps – DEVOBLOOM
zooplankton present throughout the world's oceans (except the Arctic). Due to their complex life-cycle c
Multi-Organ and Multi-Sensor on-Chip for Diabetology – DIAMOCHIP
solutions are often single organ and with one exception devoid of online sensing. DIAMOCHIP may provide
Ground state cooling of multiple mesoscopic objects in optical levitation through wavefront shaping – GROOVE
and assemble opto-mechanical resonators with exceptional quality factors. Through a reduction of their
Catalytic Access to Polyazanes – Polyazanes
The synthesis of N-N single bonds is underdeveloped, partly because of the repulsion between the non-bonding doublets of nitrogen, and partly because nitrogen prefers to form triple bonds. The aim of the project is to identify new routes to these structures from ureas, using nickel catalysis and/or light.
Seismic monitoring of the Subsurface along Transportation Infrastructure using passive measurement on TeleCOM fiber-Optic – SITcomOptics
Underground geohazards can be devastating to the economy, particularly through the sudden collapse of the surface materials on which transport networks are settled (railways, roads, etc.). To date, there are no non-invasive approaches that monitor the near subsurface at high efficiency and low cost, in order to prevent these risks, the occurrence of which increases with climate change. This project offers an innovative solution based on existing telecom optical fiber.
Microbiome and genomic analysis in apple germplasm towards broadening genetic resources to breed for resilient varieties – AppleBIOME
resilient varieties. AppleBIOME relies in an exceptional germplasm resource representative of the broad
High Aspect Ratio AlN Nanowires for efficient deep UV emission – HARAlN
the efficiency of UVC LEDs, this project is an exceptional opportunity to produce new knowledge in the fields