Scientific-Technical Areas
Scientific-technical area
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Analysis of Sustainable Energy Systems
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Bioenergy, Bioproducts, and Waste
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Wind and Photovoltaic Power Generation and Energy Efficiency
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Hydrogen Technologies
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Solar Thermal and Photochemical Technologies
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Science and Technology for Nuclear Fission
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Science and Technology for Fusion Energy
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Air Quality and Climate Change
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Applied Environmental Hydrogeosciences
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Measurement and Evaluation of Ionizing Radiations
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Soils and Climate Change
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Social Studies
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Biomedical Innovation
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Particle Physics and Astrophysics
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Accelerators, Magnets, and Power Electrical Systems
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Medical Applications of Ionizing Radiations
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Scientific Computing
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Materials and Chemistry for Energy Production
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Characterization, Treatment and Conditioning of Medium, Low, and Very Low-Level Waste
Acondicionamiento de grafito irradiado en hormigones y geopolímeros escalado industrial
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Nuclear Systems
Addressing PRiorities of Evaluated Nuclear Data in Europe
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
Thermochemical Processing
Adsorbentes Circulares Avanzados para Valorización Termoquímica
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Energy Efficiency in Building Construction
Advanced Grid Interfaces for innovative STorage INtegration
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Characterization and Treatment of High-Level Waste and Nuclear Fuel
Materials for Nuclear Energy
Advanced platform for Stainless Steel agIng and cracking aSsessmenT
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Nuclear Systems
Radiobiology
Advanced Strategies and new Approaches for Protontherapy
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
Materials for Solar Thermal Concentration Technologies
Point-Focus Solar Thermal Concentration Technologies
Solar Thermal Energy Applications
Air-Based Solar Thermal Electricity for Efficient Renewable Energy Integration & Compressed Air Energy Storage
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Safety and risk in complex systems: studies in culture, organizations and human factors
Scientific Computing
Amenazas y Leyes en el Ámbito Cibernético para instalaciones RAdiológicas y Nucleares
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Scientific Computing
Ampliación de las capacidades del nodo de datos PIC de la RES (PIC)
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Scientific Computing
Ampliación de las capacidades del nodo de datos PIC de la RES (XULA)
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Cellular Technologies
Aplicaciones Biotecnológicas del RNA Bridge Editing
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Reactor and Facility Safety
Aplicación a la planta de la investigación en Accidentes Severos
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Reactor and Facility Safety
Artificial intelligence for the Simulation of Severe AccidentS
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Reactor and Facility Safety
Assessment of Liquid Source Term for Accidental Post Management Phase
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Particle Astrophysics
Astronomía de rayos gamma con CTA-Norte y MAGIC, proyecto 1, contribución de CIEMAT
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Experimental High-Energy Physics
Avanzando en HEP: Experimentos en colisionadores e I+D Tecnológico
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Biochemical Processing
Biorrefinería multiproducto para la producción coste-efectiva de aceite microbiano mediante cultivo secuencial de bacterias y levaduras (BIODESOIL-YEAST).
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Biochemical Processing
Biorrefinerías integradas para la valorización de residuos de la industria agroalimentaria en productos de elevado valor añadido en la región de Madrid
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Physics and Systems for Fusion Devices
Blindajes de plasma de metal líquido como soluciones de nueva genereación para extracción de potencia en dispositivos de fusión magnética
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
Bringing EU-SOLARIS ERIC to its Zenith
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Advanced Materials for Energy and Environmental Applications
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Agroecosystems, Circular Economy, and Sustainability
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Analysis and Assessment of Environmental Risks
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Applications in PET/CT Molecular Imaging
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Atmospheric Modeling
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Barrier Materials
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Biochemical Processing
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Biomedical Innovation in Cancer
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Cellular Technologies
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Characterization and Control of Atmospheric Pollution
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Characterization and Treatment of High-Level Waste and Nuclear Fuel
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Characterization, Treatment and Conditioning of Medium, Low, and Very Low-Level Waste
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Data-Intensive Computing
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Development of models, scenarios and analysis of sustainability of energy technologies and systems
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Effects on Agrosystems and Ecosystems of Atmospheric Pollution and Climate Change
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Electrochemical production and conversion of hydrogen (electrolyzers and fuel cells)
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Energy Efficiency in Building Construction
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Environmental law studies
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Environmental Radioactivity
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Environmental Radiological Impact Assessment
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Actinide and Fission Product Physicochemical Laboratory
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Air Emissions Measurement Laboratory
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Air Pollution Ecotoxicity Laboratory
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Applied biomedicine Laboratory
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Atmospheric Observation Station CIEMAT-Madrid
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Barrier Materials Laboratory
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Biofuels Laboratory
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Biomass Laboratory
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Computer for Particle Physics
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Deposited Silicon Device Laboratory
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Dosimetric Standards Laboratory (LMRI-1)
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Dosimetry Laboratories
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Effect of Solar Radiation on Materials Laboratory
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Environmental Radioactivity in Enviromental Samples Laboratory
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Environmental Transuranic Sample Measurement Laboratory
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Experimental Laboratories for the Evaluation of the Energy Efficiency in Buildings and Components
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Flywheel Laboratory
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Fuel Cell Research Laboratory
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Fusion Materials Laboratory
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High-activity Radioactive Waste Research Laboratory
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LMRI-IR14-022
Assignment of ambient dose equivalent and personal dose equivalent to environmental and personal dosimeters, respectively, in 137Cs or 60Co beams, for a 1-hour irradiation configuration.
According to procedure P-LMRI-C-18. Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR14-026
Beta dose assignment for passive personal dosimeters. Minimum rate, up to 1 hour of irradiation. For longer durations, a specific estimate is required.
Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR14-027
Calibration of beta radiation monitors with Sr/Y-90, Kr-85, and/or Pm-147 sources.
According to procedures P-LMRI-C-3701.07. Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR14-028
Verification of peak kilovoltage meter response by exposure to an RQR diagnostic radiology beam and defined high voltage (non-invasive methods).
According to section 4.3 of procedure P-LMRI-C-26. Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR14-029
Calibration study for 60Co at therapy levels.
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LMRI-IR14-030
Calibration of beta radiation monitors in dose rate and various ranges of integrated dose.
According to procedure P-LMRI-C-37. Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR14-031
Beta dose assignment for passive personal dosimeters. Rate up to 3 hours of irradiation.
Irradiation with dose equivalent assignment with sources according to ISO6980, adjustable rates and doses. Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR14-032
Beta dose assignment for passive personal dosimeters. Rate up to 5 hours of irradiation.
Irradiation with dose equivalent assignment with sources according to ISO6980, adjustable rates and doses. Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR33-001
Calibration factor determination for an area neutron monitor with an Am-Be source.
According to procedure P-LMRI-C-40. Certificate is issued as a National Patterns Laboratory (R.D. 533/1996)
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LMRI-IR33-002
Calibration factor determination for an area neutron monitor with a Cf-252 source.
According to procedure P-LMRI-C-40.
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LMRI-IR33-003
Calibration factor determination for an area neutron monitor with Cf-252 and Am-Be sources
According to procedure P-LMRI-C-40
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LMRI-IR33-004
Dose assignment to personal neutron dosimeters in Hp(10) with values of 100 µSv, 500 µSv, and 1 mSv for a Cf-252 source, and 100 µSv and 300 µSv for an Am-Be source
Multiple dosimeters can be irradiated simultaneously depending on their size. Inquire for other integrated dose values. According to procedure P-LMRI-C-43.
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LMRI-IR33-005
Calibration of personal neutron dosimeters in Hp(10) with values of 100 µSv, 500 µSv, and 1 mSv for a Cf-252 source, and 100 µSv and 300 µSv for an Am-Be source.
Multiple dosimeters can be calibrated simultaneously depending on their size. Inquire for other integrated dose values. According to procedure P-LMRI-C-43.
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MATCH-A01
Determination of an element (As, Ba, Be, Bi, Cd, Ce, Co, Cr, Cs, Cu, Eu, Gd, La, Li, Mo, Nd, Ni, Pb, Pd, Rb, Re, Rh, Ru, Sb, Se, Sn, Sr, Th, Ti, Tl, U, V, W, Y, Zn or Zr) in aqueous solutions by plasma-mass spectrometry.
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MATCH-A09
Determination of heavy metals in landfill samples leached by Atomic Absorption (Hg), LLama Emission Photometry (Na) and Plasma Coupled Emission Spectroscopy (Ba, Be, Cd, Cr, Cu, Ni, Sb Te, Tl and Pb).
Sample in liquid state
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MATCH-A12
Determination of lead in aluminium slag samples by Inductively Coupled Plasma Mass Spectrometry (ICP-MS).
Sample in solid state.
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MATCH-A15
Multielemental determination (Ag, Al, As, Au, B, Ba Be, Bi, Cd, Co, Cr, Cs, Cu, Fe, Ga, Ge, Hf, Hg, In, Ir, Li, Mg, Mo, Nb, Ni, Pb, Pd, Pt, Rb, Re, Rh, Ru, Sb, Sc, Se, Sn, Sr, Ta, Tc, Te, Th, Ti, Tl, U, V, Y, Zr, Zr, lanthanide and actinide elements) of a
Determination of 2 to 15 elements per sample in liquid state
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MATCH-A16
Multielemental determination (Ag, Al, As, Au, B, Ba Be, Bi, Cd, Co, Cr, Cs, Cu, Fe, Ga, Ge, Hf, Hg, In, Ir, Li, Mg, Mo, Nb, Ni, Pb, Pd, Pt, Rb, Re, Rh, Ru, Sb, Sc, Se, Sn, Sr, Ta, Tc, Te, Th, Ti, Tl, U, V, Y, Zr, Zr, lanthanide and actinide elements) of a
Determination of 16 to 30 elements per sample in liquid state
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MATCH-A17
Multielemental determination (Ag, Al, As, Au, B, Ba Be, Bi, Cd, Co, Cr, Cs, Cu, Fe, Ga, Ge, Hf, Hg, In, Ir, Li, Mg, Mo, Nb, Ni, Pb, Pd, Pt, Rb, Re, Rh, Ru, Sb, Sc, Se, Sn, Sr, Ta, Tc, Te, Th, Ti, Tl, U, V, Y, Zr, Zr, lanthanide and actinide elements) of a
Determination of more than 30 elements per sample in liquid state
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MATCH-A18
Determination of a single element (Ag, Al, As, Au, B, Ba Be, Bi, Cd, Co, Cr, Cs, Cu, Fe, Ga, Ge, Hf, Hg, In, Ir, Li, Mg, Mo, Nb, Ni, Pb, Pd, Pt, Rb, Re, Rh, Ru, Sb, Sc, Se, Sn, Sr, Ta, Tc, Te, Th, Ti, Tl, U, V, Y, Zr, Zr, lanthanide and actinide elements)
Determination of a single element in a solid state sample. Includes digestion and sample pretreatment.
