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 (21)Preflabel
BB142RVLAttenuation due to backscatter of electromagnetic radiation (700nm wavelength at 142 degree incidence) by the water body by in-situ optical backscatter measurement
BPVSO412Volume scattering attributable to particles of electromagnetic radiation (412nm wavelength) {Beta(p)} in the water body by in-situ optical backscatter measurement
BPVSO470Volume scattering attributable to particles of electromagnetic radiation (470nm wavelength) {Beta(p)} in the water body by in-situ optical backscatter measurement
BPVSO532Volume scattering attributable to particles of electromagnetic radiation (532nm wavelength) {Beta(p)} in the water body by in-situ optical backscatter measurement
BPVSO650Volume scattering attributable to particles of electromagnetic radiation (650nm wavelength) {Beta(p)} in the water body by in-situ optical backscatter measurement
BPVSO700Volume scattering attributable to particles of electromagnetic radiation (700nm wavelength) {Beta(p)} in the water body by in-situ optical backscatter measurement
BPVSO880Volume scattering attributable to particles of electromagnetic radiation (880nm wavelength) {Beta(p)} in the water body by in-situ optical backscatter measurement
BVSFO412Volume scattering coefficient of electromagnetic radiation (412nm wavelength) {Beta} in the water body by in-situ optical backscatter measurement
BVSFO470Volume scattering coefficient of electromagnetic radiation (470nm wavelength) {Beta} in the water body by in-situ optical backscatter measurement
BVSFO532Volume scattering coefficient of electromagnetic radiation (532nm wavelength) {Beta} in the water body by in-situ optical backscatter measurement
BVSFO650Volume scattering coefficient of electromagnetic radiation (650nm wavelength) {Beta} in the water body by in-situ optical backscatter measurement
BVSFO700Volume scattering coefficient of electromagnetic radiation (700nm wavelength) {Beta} in the water body by in-situ optical backscatter measurement
BVSFO880Volume scattering coefficient of electromagnetic radiation (880nm wavelength) {Beta} in the water body by in-situ optical backscatter measurement
NVLTOBS1Raw signal (counts) of instrument output by in-situ optical backscatter measurement
ROPBS470Raw signal (counts) of instrument output (470nm wavelength) by in-situ optical backscatter measurement
ROPBS532Raw signal (counts) of instrument output (532nm wavelength) by in-situ optical backscatter measurement
ROPBS650Raw signal (counts) of instrument output (650nm wavelength) by in-situ optical backscatter measurement
ROPBS700Raw signal (counts) of instrument output (700nm wavelength) by in-situ optical backscatter measurement
ROPBS880Raw signal (counts) of instrument output (880nm wavelength) by in-situ optical backscatter measurement
TURBPR01Turbidity of water in the water body by in-situ optical backscatter measurement and laboratory calibration against formazin
TUSDPR01Turbidity standard deviation of water in the water body by in-situ optical backscatter measurement and laboratory calibration against formazin