Matches in Nanopublications for { ?s ?p ?o <https://w3id.org/np/RAjKwd09n2yeg-Xr2TZ434sTNUAgorFsLgRUg3PEN0030/assertion>. }
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- 4f77b29c-8b32-46bb-9477-a280ed542b4c description "ADAM DataCube June 2008 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 573f8562-5e8e-43ac-bc06-8bdb1b5acf8e description "Time evolution of chlorophyll concentrations in Bering Strait and Fram Straits. Blue dots mark satellite measured values (MODIS-Aqua). The trends in yearly mean and yearly maximum values for satellite data with significance level <= 0.05 are also plotted, as well as the GFDL-ESM4 and MPI-ESM1-2-LR chlorophyll values for the same periods." assertion.
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- 5e386995-94b4-492f-b33b-606bba54ff32 description "ADAM DataCube June 2003 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 5eec793c-b26f-462e-bf00-c5aa9216f1f3 description "ADAM DataCube July 2017 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 619410a5-5534-4241-9fde-bec7ababb467 description "ADAM DataCube June 2013 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 638b2c15-c353-4c4c-bf44-b4278cb2c19d description "ADAM DataCube June 2006 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 6d92588e-0796-4968-8ccf-6e6b15ee3e77 description "ADAM DataCube August 2013 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 6e6ab0ba-6585-44a9-9da8-5dea29652278 description "ADAM DataCube July 2005 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 75bfd7a7-d90e-4003-a731-97d1539bccfb description "ADAM DataCube June 2009 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 7811b32d-172e-482e-a6ed-1af546432385 description "ADAM DataCube August 2006 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 78355681-c255-47d5-9104-73974325ecc3 description "Ocean Color Data: Modis-aqua_chl-a (JJA, 2002-2018) downloaded from the ADAM Platform (https://reliance.adamplatform.eu/) used furing the FORCeS eScience course 'Tools in Climate Science: Linking Observations with Modelling'." assertion.
- 7e1215cf-ab9b-446a-ab99-95734a5cb9aa description "ADAM DataCube July 2008 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 7edcf5a3-7c2e-4de9-b786-6015a9d70073 description "ADAM DataCube July 2007 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 81b9ed60-0cc0-41e3-a45e-b0ec411304b4 description "ADAM DataCube June 2018 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 837264f6-e4cb-41a7-b47b-b8cad895327c description "ADAM DataCube June 2004 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 844890d3-3e0e-4b74-bfaf-dc1c99855f12 description "This is a tarball for the Docker climate-JupyterLab image - Version 2021-03-18 To use it: download the image file docker-climate-notebook-2021-03-18.tar load it with docker with the command: docker load --input docker-climate-notebook-2021-03-18.tar launch the Docker container binding of your data folder (on the local machine) with the /import folder i(inside the container) with the command: docker run -v my_data_folder:/import -p 7777:8888 quay.io/nordicesmhub/docker-climate-notebook:2021-03-18 start your favorite web browser and go to: http://localhost:7777/ipython/ See https://github.com/NordicESMhub/docker-climate-notebook for more details" assertion.
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- 862ea24b-48db-4b01-919d-e2cd64d4ed2f description "ADAM DataCube July 2016 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 89046ce8-468b-471f-9a59-30684778fd1c description "ADAM DataCube July 2004 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 8a24532c-a51e-422c-a110-16500539f590 description "ADAM DataCube August 2014 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 8e2332bf-67e3-4de8-bcf6-0b2a28bc7ec2 description "This jupyter notebook support the report written for the FORCeS eScience course 'Tools in Climate Science: Linking Observations with Modelling'" assertion.
- 8fefdc91-c590-4dba-80e0-290d61b041ae description "ADAM DataCube June 2014 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 9175afc7-1752-4728-bc6d-e31ee6733483 description "ADAM DataCube August 2008 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 92d5907a-91f0-4592-a95e-906193457791 description "ADAM DataCube June 2017 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- 999a1e17-fe9c-4198-9c47-18728f7d152a description "ADAM DataCube June 2012 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- a3024620-f8c7-4e13-bb17-c7fa1b7f67f6 description "ADAM DataCube June 2011 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- aadc3601-6ecc-46fa-bcd8-cab6c1ffa637 description "ADAM DataCube August 2003 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- aca2cf3e-050e-432c-8766-64565ebb0550 description "This GeoJSON file contains two areas e.g. Bering Strait and Fram Strait. Model and observations of Chlorophyll concentrations are compared over these two areas." assertion.
- b043b7b8-83bb-4f65-b5d0-c9e4d7ebd915 description "The future response of marine ecosystem diversity to continued anthropogenic forcing is poorly constrained. Phytoplankton are a diverse set of organisms that form the base of the marine ecosystem. Currently, ocean biogeochemistry and ecosystem models used for climate change projections typically include only 2−3 phytoplankton types and are, therefore, too simple to adequately assess the potential for changes in plankton community structure. Here, we analyse a complex ecosystem model with 35 phytoplankton types to evaluate the changes in phytoplankton community composition, turnover and size structure over the 21st century. We find that the rate of turnover in the phytoplankton community becomes faster during this century, that is, the community structure becomes increasingly unstable in response to climate change. Combined with alterations to phytoplankton diversity, our results imply a loss of ecological resilience with likely knock-on effects on the productivity and functioning of the marine environment." assertion.
- b7a1281c-bccb-46eb-8c7d-e34e4ee17ea4 description "ADAM DataCube August 2011 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- c0735b8f-5248-4541-98c2-a655bf5560ac description "This Jupyter notebook has been used to generate the Research Object and also to update it e.g. add all the internal and external resources used and generated during the eScience course." assertion.
- c14239a6-faf5-407f-a0e9-28968658ebec description "ADAM DataCube July 2015 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- c466bac3-4bed-4e5c-a617-4a78fcac92f6 description "Contributing roughly half of the biosphere's net primary production (NPP), photosynthesis by oceanic phytoplankton is a vital link in the cycling of carbon between living and inorganic stocks. Each day, more than a hundred million tons of carbon in the form of CO2 are fixed into organic material by these ubiquitous, microscopic plants of the upper ocean, and each day a similar amount of organic carbon is transferred into marine ecosystems by sinking and grazing. The distribution of phytoplankton biomass and NPP is defined by the availability of light and nutrients (nitrogen, phosphate, iron). These growth-limiting factors are in turn regulated by physical processes of ocean circulation, mixed-layer dynamics, upwelling, atmospheric dust deposition, and the solar cycle. Satellite measurements of ocean colour provide a means of quantifying ocean productivity on a global scale and linking its variability to environmental factors. Here we describe global ocean NPP changes detected from space over the past decade. The period is dominated by an initial increase in NPP of 1,930 teragrams of carbon a year (Tg C yr(-1)), followed by a prolonged decrease averaging 190 Tg C yr(-1). These trends are driven by changes occurring in the expansive stratified low-latitude oceans and are tightly coupled to coincident climate variability. This link between the physical environment and ocean biology functions through changes in upper-ocean temperature and stratification, which influence the availability of nutrients for phytoplankton growth. The observed reductions in ocean productivity during the recent post-1999 warming period provide insight on how future climate change can alter marine food webs." assertion.
- c639087e-af3b-456d-8b98-f4ebaf9cc300 description "The relationship between the spring bloom along the Primorye coast and the sea ice of the Tatarskiy Strait in the northern region of the East/Japan Sea, a semi-enclosed marginal sea in the North Pacific, was investigated using the ten-year SeaWiFS chlorophyll-a concentration data and DMSP/SSMI sea ice concentration data from 1998 to 2007. Year-to-year variations in the chlorophyll-a concentrations in the spring were positively correlated with those of the sea ice concentrations in the Tatarskiy Strait in the previous winter with a correlation coefficient of 0.77. Abrupt increases in nutrients, essential for the spring bloom in the upper ocean during spring, were supplied from sea ice-melted waters. Time series of vertical distributions of the nutrients indicated that phosphate concentrations were extremely elevated in the upper ocean (less than 100 m) without any connection to high concentrations in the deep waters below. The water mass from sea ice provided preferable conditions for the spring bloom through changes in the vertical stratification structure of the water columns. Along-coast ratios of stability parameters between two neighboring months clearly showed the rapid progression of the generation of a shallow pycnocline due to fresh water originating from sea ice. This study addressed the importance of the physical environment for biogeochemical processes in semi-enclosed marginal seas affected by local sea ice." assertion.
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- e73a7ecb-53a4-416b-9654-cf9764aeee81 description "🐳 🔬 📚 Jupyter running in a docker container. The version used by this study is 2021-03-18 and it was used through the Galaxy Europe JupyterLab Climate Interactive Tool." assertion.
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- e87a1174-870d-4fef-b440-f81ec07ea15f description "ADAM DataCube June 2016 MODIS Chlorophyll-a Concentration(monthly)" assertion.
- eb7f79db-b7c6-4ae5-a9c7-4f1ec0920f28 description "ADAM DataCube July 2003 MODIS Chlorophyll-a Concentration(monthly)" assertion.
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- f2bec97b-8a65-4a82-bb53-fafe0a62e04e description "Summer melting of sea ice leads to the formation of under-ice melt ponds in Arctic seas. The biological characteristics of such a pond were studied in summer 1993. The chlorophyte Pyramimonas sp. (Prasinophyceae) formed a unialgal bloom with cell densities of 19.1 x 103 cells ml-1 and a pigment concentration of 29.6 mg m-3. A comparison with ice core data revealed differences in algal biomass and community structure. Physical data indicate that under-ice ponds are a common feature in the Arctic Ocean. Thus, communities within under-ice ponds, which have not been included in production estimates, may significantly contribute to the Arctic marine food web." assertion.
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