Instrument for the physical characterization of tephra fallout
The invention responds to the need of evaluate the quantity and grain size of the emitted material, to obtain more reliable dispersion models of volcanic ash.
The invention responds to the need of evaluate the quantity and grain size of the emitted material, to obtain more reliable dispersion models of volcanic ash.
The main goal of this invention is to provide a device for sampling and measuring at different depths.
The invention refers to a method of processing interferometric image radar data, acquired in multi-pass configurations, for the detection and analysis of multiple components of non-stationary radio backscatter at different altitudes and/or displacement speeds.
The invention relates to a molecular diagnostic method for detecting the presence of the phytopathogenic fungus Macrophomina phaseolina in infected soil, seed and plant samples.
econometric analysis for administrative databases
industrial organization, international economics, and corporate finance.
This solution is a device with magnetic grip locomotion and a unit for releasing the clog via remote control.
The technology, called RUFIVIST (Reconfigurable Underwater Vehicle for Inspection, Free-floating Intervention, and Survey Tasks), is part of the so-called Unmanned Underwater Vehicle (UUV), i.e. underwater drones without personnel on board.
The invention refers to the sector of non-invasive investigations by means of ultrasound, both in the medical field and in the structural field of materials or objects.
The patent protects the first experimental demonstration of super spectral resolution spectroscopy obtained using a random laser light source.