Pan-European infrastructure for ocean & marine data management

P01 Vocabulary - Facet Search on Semantic Components

P01 Vocabulary - Facet Search on Semantic Components

The P01 Parameter Usage Vocabulary is based on a semantic model. This model uses a defined set of controlled vocabularies (the semantic components). The Facet Search below facilitates you to search for specific existing P01 terms using components for drilling down.

Are you missing specific P01 terms in the vocabulary, then you can compose and submit new terms for review and uptake using the P01 Vocabulary Builder tool.

Conceptid (3090)Preflabel
FEMNGS06Proportion of particles (Fe-Mn nodules) in the sediment 5000-10000um
FEMNGS07Proportion of particles (Fe-Mn nodules) in the sediment 10000-20000um
FEMNGS08Proportion of particles (Fe-Mn nodules) in the sediment 20000-40000um
FEMNGS09Proportion of particles (Fe-Mn nodules) in the sediment 40000-70000um
FLNTGS01Proportion of particles (flint) in the sediment 160-315um
FLNTGS02Proportion of particles (flint) in the sediment 315-630um
FLNTGS03Proportion of particles (flint) in the sediment 630-1250um
FLNTGS04Proportion of particles (flint) in the sediment 1250-2500um
FLNTGS05Proportion of particles (flint) in the sediment 2500-5000um
FLNTGS06Proportion of particles (flint) in the sediment 5000-10000um
FLNTGS07Proportion of particles (flint) in the sediment 10000-20000um
FLNTGS08Proportion of particles (flint) in the sediment 20000-40000um
FLNTGS09Proportion of particles (flint) in the sediment 40000-70000um
FLOWCABVHorizontal transport rate daily mean of water in the water body by submarine cable voltage measurement
FRVMOD01Friction velocity of waves in the water body by model prediction
FVFESD01Photochemical quantum efficiency standard deviation {Fv/Fm} in the experiment water sample by bench fast repetition rate fluorometer (FRRF) and calculation from Fm and Fo fluorescence yields from the dark chamber
FVFEXI01Photochemical quantum efficiency {Fv/Fm} in the experiment water sample by bench fast repetition rate fluorometer (FRRF) and calculation from Fm and Fo fluorescence yields from the dark chamber
FVFMFIR1Photochemical quantum efficiency {Fv/Fm} in the water body by fluorescence induction and relaxation (FIRe) fluorometer and calculation from Fm and Fo fluorescence yields from the dark chamber
FVFMFIRXPhotochemical quantum efficiency {Fv/Fm} in the water body by fluorescence induction and relaxation (FIRe) fluorometer and calculation from blank-corrected Fm and Fo fluorescence yields from the dark chamber
FVFMFR01Photochemical quantum efficiency {Fv/Fm or Phi} in the water body by in-situ fast repetition rate fluorometer (FRRF) and calculation from Fm and Fo fluorescence yields from the dark chamber
FVFMFR02Photochemical quantum efficiency {Fv/Fm or Phi} in the water body by in-situ fast repetition rate fluorometer (FRRF) and calculation from Fm and Fo fluorescence yields from the light chamber
FVFMFR03Photochemical quantum efficiency {Fv/Fm} in the water body by in-situ fast repetition rate fluorometer (FRRF) and calculation from blank-corrected Fm and Fo fluorescence yields from the light chamber
FVFMFR04Photochemical quantum efficiency {Fv/Fm} in the water body by in-situ fast repetition rate fluorometer (FRRF) and calculation from blank-corrected Fm and Fo fluorescence yields from the dark chamber
FVFMMI01Photochemical quantum efficiency {Fv/Fm} in the water body by bench fast repetition rate fluorometer (FRRF) and calculation from Fm and Fo fluorescence yields from the dark chamber
FVFMMIBLPhotochemical quantum efficiency {Fv/Fm} in the water body by bench fast repetition rate fluorometer (FRRF) and calculation from blank-corrected Fm and Fo fluorescence yields from the dark chamber