Global Provenance
API endpoint that allows Global provenance to be viewed or edited.
GET /sms/cv/api/v1/globalprovenances/1/measured_quantities/?format=api
https://en.wikipedia.org/wiki/Absorbance", "category": null, "note": "", "status": "ACCEPTED", "requested_by_email": "stephan.schreiber@ufz.de", "discussion_url": null }, "relationships": { "sampling_media": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/relationships/sampling_media?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/sampling_media/?format=api" }, "data": { "type": "SamplingMedium", "id": "21" } }, "aggregation_type": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/relationships/aggregation_type?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/aggregation_type/?format=api" }, "data": { "type": "AggregationType", "id": "12" } }, "global_provenance": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/relationships/global_provenance?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/global_provenance/?format=api" }, "data": { "type": "GlobalProvenance", "id": "1" } }, "measured_quantity_units": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/relationships/measured_quantity_units?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/measured_quantity_units/?format=api" } }, "successor": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/relationships/successor?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/successor/?format=api" } } }, "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/351/?format=api" } }, { "type": "MeasuredQuantity", "id": "374", "attributes": { "term": "Concentration CO", "definition": "", "provenance": null, "provenance_uri": null, "category": null, "note": "", "status": "ACCEPTED", "requested_by_email": "felix.thomas@ufz.de", "discussion_url": null }, "relationships": { "sampling_media": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/relationships/sampling_media?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/sampling_media/?format=api" }, "data": { "type": "SamplingMedium", "id": "9" } }, "aggregation_type": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/relationships/aggregation_type?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/aggregation_type/?format=api" }, "data": { "type": "AggregationType", "id": "1" } }, "global_provenance": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/relationships/global_provenance?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/global_provenance/?format=api" }, "data": { "type": "GlobalProvenance", "id": "1" } }, "measured_quantity_units": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/relationships/measured_quantity_units?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/measured_quantity_units/?format=api" } }, "successor": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/relationships/successor?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/successor/?format=api" } } }, "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/374/?format=api" } }, { "type": "MeasuredQuantity", "id": "367", "attributes": { "term": "Radar specific differential phase hv", "definition": "Specific Differential Phase (KDP) is a derived product that shows the gradient, or change, in Differential Phase Shift (ΦDP). Positive KDP values indicate greater phase shift in the horizontal than the vertical.\r\nIncreasing KDP is an indication of an increase in the size and concentration of rain drops, and thus, an increase in rain rate. This means that KDP is useful for pinpointing areas where the heaviest rainfall is occurring.\r\nnaming accoring to WMO CF-extension Radial", "provenance": "US National Weather Service", "provenance_uri": "https://www.weather.gov/jan/dualpolupgrade-products#kdp", "category": null, "note": "", "status": "ACCEPTED", "requested_by_email": "corinna.rebmann@kit.edu", "discussion_url": null }, "relationships": { "sampling_media": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/relationships/sampling_media?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/sampling_media/?format=api" }, "data": { "type": "SamplingMedium", "id": "9" } }, "aggregation_type": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/relationships/aggregation_type?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/aggregation_type/?format=api" }, "data": { "type": "AggregationType", "id": "10" } }, "global_provenance": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/relationships/global_provenance?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/global_provenance/?format=api" }, "data": { "type": "GlobalProvenance", "id": "1" } }, "measured_quantity_units": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/relationships/measured_quantity_units?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/measured_quantity_units/?format=api" } }, "successor": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/relationships/successor?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/successor/?format=api" } } }, "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/367/?format=api" } }, { "type": "MeasuredQuantity", "id": "357", "attributes": { "term": "Radial velocity of scatterers, away from instrument", "definition": "A velocity is a vector quantity. \"Radial velocity away from instrument\" means the component of the velocity along the line of sight of the instrument where positive implies movement away from the instrument (i.e. outward). The \"instrument\" (examples are radar and lidar) is the device used to make the observation. The \"scatterers\" are what causes the transmitted signal to be returned to the instrument (examples are aerosols, hydrometeors and refractive index irregularities), of whatever kind the instrument detects. A standard name referring to radial velocity \"toward_instrument\" should be used for a data variable having the opposite sign convention.", "provenance": "CF conventions", "provenance_uri": "http://cfconventions.org/Data/cf-standard-names/current/build/cf-standard-name-table.html", "category": "atmosphere", "note": "", "status": "ACCEPTED", "requested_by_email": "corinna.rebmann@kit.edu", "discussion_url": null }, "relationships": { "sampling_media": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/relationships/sampling_media?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/sampling_media/?format=api" }, "data": { "type": "SamplingMedium", "id": "9" } }, "aggregation_type": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/relationships/aggregation_type?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/aggregation_type/?format=api" }, "data": { "type": "AggregationType", "id": "10" } }, "global_provenance": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/relationships/global_provenance?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/global_provenance/?format=api" }, "data": { "type": "GlobalProvenance", "id": "1" } }, "measured_quantity_units": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/relationships/measured_quantity_units?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/measured_quantity_units/?format=api" } }, "successor": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/relationships/successor?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/successor/?format=api" } } }, "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/357/?format=api" } }, { "type": "MeasuredQuantity", "id": "361", "attributes": { "term": "Radial velocity of scatterers, towards instrument", "definition": "A velocity is a vector quantity. \"Radial velocity toward instrument\" means the component of the velocity along the line of sight of the instrument where positive implies movement toward the instrument (i.e. inward). The \"instrument\" (examples are radar and lidar) is the device used to make the observation. The \"scatterers\" are what causes the transmitted signal to be returned to the instrument (examples are aerosols, hydrometeors and refractive index irregularities), of whatever kind the instrument detects. A standard name referring to radial velocity \"away_from_instrument\" should be used for a data variable having the opposite sign convention.", "provenance": "CF conventions", "provenance_uri": "http://cfconventions.org/Data/cf-standard-names/current/build/cf-standard-name-table.html", "category": "atmosphere", "note": "", "status": "ACCEPTED", "requested_by_email": null, "discussion_url": null }, "relationships": { "sampling_media": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/relationships/sampling_media?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/sampling_media/?format=api" }, "data": { "type": "SamplingMedium", "id": "9" } }, "aggregation_type": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/relationships/aggregation_type?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/aggregation_type/?format=api" }, "data": { "type": "AggregationType", "id": "10" } }, "global_provenance": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/relationships/global_provenance?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/global_provenance/?format=api" }, "data": { "type": "GlobalProvenance", "id": "1" } }, "measured_quantity_units": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/relationships/measured_quantity_units?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/measured_quantity_units/?format=api" } }, "successor": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/relationships/successor?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/successor/?format=api" } } }, "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/361/?format=api" } }, { "type": "MeasuredQuantity", "id": "380", "attributes": { "term": "Sonic temperature", "definition": "Sonic temperature is similar to 'virtual Temperature' but not exactly the same and derived from speed of sound of sonic anemometers/thermometers.", "provenance": "several manuals for sonic anemometrs/thermometers", "provenance_uri": "https://amt.copernicus.org/articles/15/95/2022/", "category": null, "note": "see for example:\r\nhttps://www.campbellsci.com/csat3b\r\nhttps://gillinstruments.com/wp-content/uploads/2022/08/WindMaster-iss7-Datasheet.pdf", "status": "ACCEPTED", "requested_by_email": "corinna.rebmann@kit.edu", "discussion_url": null }, "relationships": { "sampling_media": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/relationships/sampling_media?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/sampling_media/?format=api" }, "data": { "type": "SamplingMedium", "id": "9" } }, "aggregation_type": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/relationships/aggregation_type?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/aggregation_type/?format=api" }, "data": { "type": "AggregationType", "id": "1" } }, "global_provenance": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/relationships/global_provenance?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/global_provenance/?format=api" }, "data": { "type": "GlobalProvenance", "id": "1" } }, "measured_quantity_units": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/relationships/measured_quantity_units?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/measured_quantity_units/?format=api" } }, "successor": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/relationships/successor?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/successor/?format=api" } } }, "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/380/?format=api" } }, { "type": "MeasuredQuantity", "id": "402", "attributes": { "term": "Wind speed, lateral", "definition": "The speed of the air (absolute) in the atmosphere. Lateral component of wind speed.", "provenance": null, "provenance_uri": null, "category": null, "note": "", "status": "ACCEPTED", "requested_by_email": "paul.remmler@ufz.de", "discussion_url": "https://codebase.helmholtz.cloud/hub-terra/sms/sms-cv/-/issues/309" }, "relationships": { "sampling_media": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/relationships/sampling_media?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/sampling_media/?format=api" }, "data": { "type": "SamplingMedium", "id": "9" } }, "aggregation_type": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/relationships/aggregation_type?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/aggregation_type/?format=api" }, "data": { "type": "AggregationType", "id": "1" } }, "global_provenance": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/relationships/global_provenance?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/global_provenance/?format=api" }, "data": { "type": "GlobalProvenance", "id": "1" } }, "measured_quantity_units": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/relationships/measured_quantity_units?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/measured_quantity_units/?format=api" } }, "successor": { "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/relationships/successor?format=api", "related": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/successor/?format=api" } } }, "links": { "self": "https://sms-cv.helmholtz.cloud/sms/cv/api/v1/measuredquantities/402/?format=api" } } ] }{ "data": [ { "type": "MeasuredQuantity", "id": "351", "attributes": { "term": "Absorbance, 260nm", "definition": "Absorbance is defined as \"the logarithm of the ratio of incident to transmitted radiant power through a sample. Absorbance 260nm describes the absorbance at a wavelength of 260 nm.", "provenance": "Wikipedia", "provenance_uri": "