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On October 21, 2021 at 11:48:09 AM CDT,

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f | 1 | { | f | 1 | { |
2 | "Author": [ | 2 | "Author": [ | ||
3 | { | 3 | { | ||
4 | "affiliation": "", | 4 | "affiliation": "", | ||
5 | "creatorName": "Landry, David", | 5 | "creatorName": "Landry, David", | ||
6 | "email": "david.landry@umanitoba.ca", | 6 | "email": "david.landry@umanitoba.ca", | ||
7 | "nameIdentifier": "", | 7 | "nameIdentifier": "", | ||
8 | "nameType": "Personal" | 8 | "nameType": "Personal" | ||
9 | } | 9 | } | ||
10 | ], | 10 | ], | ||
11 | "PublicationYear": "2021", | 11 | "PublicationYear": "2021", | ||
12 | "Publisher": "BaySys", | 12 | "Publisher": "BaySys", | ||
13 | "ResourceType": "field logs", | 13 | "ResourceType": "field logs", | ||
14 | "Rights": "Creative Commons Attribution 4.0 International", | 14 | "Rights": "Creative Commons Attribution 4.0 International", | ||
15 | "author": null, | 15 | "author": null, | ||
16 | "author_email": null, | 16 | "author_email": null, | ||
17 | "awardTitle": "", | 17 | "awardTitle": "", | ||
18 | "awardURI": "", | 18 | "awardURI": "", | ||
19 | "citation": "", | 19 | "citation": "", | ||
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21 | "descriptionType": "Abstract", | 21 | "descriptionType": "Abstract", | ||
22 | "funderIdentifier": "", | 22 | "funderIdentifier": "", | ||
23 | "funderIdentifierType": "", | 23 | "funderIdentifierType": "", | ||
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n | 27 | "groups": [ | n | 27 | "groups": [], |
28 | { | ||||
29 | "description": "Freshwater is...", | ||||
30 | "display_name": "Freshwater", | ||||
31 | "id": "8f8cd877-b037-4b1a-b928-f86d9e093741", | ||||
32 | "image_display_url": | ||||
33 | inks.com.au/data/uploads/group/2017-08-20-225845.742670waterqual.jpg", | ||||
34 | "name": "freshwater", | ||||
35 | "title": "Freshwater" | ||||
36 | }, | ||||
37 | { | ||||
38 | "description": "Female Daphnia magna carrying a resting egg | ||||
39 | (\"ephippium\"). The black ephippium is part of the carapace and | ||||
40 | contains usually two sexual eggs. Photo by Dieter Ebert, Basel, | ||||
41 | Switzerland. \r\nCC BY-SA 4.0 Licence\r\n", | ||||
42 | "display_name": "Marine", | ||||
43 | "id": "98238b1c-5be8-41ad-8c6e-74cdc4f5f369", | ||||
44 | "image_display_url": | ||||
45 | au/data/uploads/group/2017-08-24-195049.362968Daphniamagnasexual.jpg", | ||||
46 | "name": "marine", | ||||
47 | "title": "Marine" | ||||
48 | } | ||||
49 | ], | ||||
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51 | "isopen": false, | 29 | "isopen": false, | ||
52 | "language": "", | 30 | "language": "", | ||
53 | "licenceType": "Open", | 31 | "licenceType": "Open", | ||
54 | "license_id": null, | 32 | "license_id": null, | ||
55 | "license_title": null, | 33 | "license_title": null, | ||
56 | "maintainer": null, | 34 | "maintainer": null, | ||
57 | "maintainer_email": null, | 35 | "maintainer_email": null, | ||
58 | "metadata_created": "2021-10-21T16:46:48.188579", | 36 | "metadata_created": "2021-10-21T16:46:48.188579", | ||
t | 59 | "metadata_modified": "2021-10-21T16:48:02.290508", | t | 37 | "metadata_modified": "2021-10-21T16:48:09.201886", |
60 | "name": "baysys-field-rep", | 38 | "name": "baysys-field-rep", | ||
61 | "notes": "about field reports", | 39 | "notes": "about field reports", | ||
62 | "num_resources": 2, | 40 | "num_resources": 2, | ||
63 | "num_tags": 1, | 41 | "num_tags": 1, | ||
64 | "organization": { | 42 | "organization": { | ||
65 | "approval_status": "approved", | 43 | "approval_status": "approved", | ||
66 | "created": "2017-07-21T13:15:49.935872", | 44 | "created": "2017-07-21T13:15:49.935872", | ||
67 | "description": "The Centre for Earth Observation Science (CEOS) | 45 | "description": "The Centre for Earth Observation Science (CEOS) | ||
68 | was established in 1994 with a mandate to research, preserve and | 46 | was established in 1994 with a mandate to research, preserve and | ||
69 | communicate knowledge of Earth system processes using the technologies | 47 | communicate knowledge of Earth system processes using the technologies | ||
70 | of Earth Observation Science. Research is multidisciplinary and | 48 | of Earth Observation Science. Research is multidisciplinary and | ||
71 | collaborative seeking to understand the complex interrelationships | 49 | collaborative seeking to understand the complex interrelationships | ||
72 | between elements of Earth systems, and how these systems will likely | 50 | between elements of Earth systems, and how these systems will likely | ||
73 | respond to climate change. Although researchers have worked in many | 51 | respond to climate change. Although researchers have worked in many | ||
74 | regions, the Arctic marine system has always been a unifying focus of | 52 | regions, the Arctic marine system has always been a unifying focus of | ||
75 | activity.\r\n\r\nIn 2012, CEOS, along with the Greenland Climate | 53 | activity.\r\n\r\nIn 2012, CEOS, along with the Greenland Climate | ||
76 | Research Centre (GCRC, Nuuk, Greenland) and the Arctic Research Centre | 54 | Research Centre (GCRC, Nuuk, Greenland) and the Arctic Research Centre | ||
77 | (ARC, Aarhus, Denmark) established the Arctic Science Partnership, | 55 | (ARC, Aarhus, Denmark) established the Arctic Science Partnership, | ||
78 | thereby integrating academic and research initiatives.\r\n\r\nAreas of | 56 | thereby integrating academic and research initiatives.\r\n\r\nAreas of | ||
79 | existing research activity are divided among key themes:\r\n\r\nArctic | 57 | existing research activity are divided among key themes:\r\n\r\nArctic | ||
80 | Anthropology/Paleoclimatology: LiDAR scanning and digital site | 58 | Anthropology/Paleoclimatology: LiDAR scanning and digital site | ||
81 | preservation, archaeo-geophysics, permafrost degredation, lithic | 59 | preservation, archaeo-geophysics, permafrost degredation, lithic | ||
82 | morphometrics, zooarchaeology, proxy studies, paleodistribution of sea | 60 | morphometrics, zooarchaeology, proxy studies, paleodistribution of sea | ||
83 | ice, landscape learning, Paleo-Eskimo culture, Thule Inuit culture, | 61 | ice, landscape learning, Paleo-Eskimo culture, Thule Inuit culture, | ||
84 | ethnographic analogy, traditional knowledge, climate change and | 62 | ethnographic analogy, traditional knowledge, climate change and | ||
85 | northern heritage resource management.\r\n\r\nAtmospheric | 63 | northern heritage resource management.\r\n\r\nAtmospheric | ||
86 | Studies/Meteorology: Boundary layer, precipitation, clouds, storms and | 64 | Studies/Meteorology: Boundary layer, precipitation, clouds, storms and | ||
87 | extreme weather, circulation, eddy correlations, polar vortex, | 65 | extreme weather, circulation, eddy correlations, polar vortex, | ||
88 | climate, teleconnections, geophysical fluid dynamics, flux and energy | 66 | climate, teleconnections, geophysical fluid dynamics, flux and energy | ||
89 | budgets, ocean-sea ice-atmosphere interface, radiative transfer, ice | 67 | budgets, ocean-sea ice-atmosphere interface, radiative transfer, ice | ||
90 | albedo feedback, cloud radiative forcing, pCO2. | 68 | albedo feedback, cloud radiative forcing, pCO2. | ||
91 | \r\n\r\nBiogeochemistry: Organic carbon, greenhouse gases, bubbles, | 69 | \r\n\r\nBiogeochemistry: Organic carbon, greenhouse gases, bubbles, | ||
92 | Ikaite, carbonate chemistry, CO2 fluxes, mercury and other trace | 70 | Ikaite, carbonate chemistry, CO2 fluxes, mercury and other trace | ||
93 | metals, minerals, hydrocarbons, brine processes, otolith | 71 | metals, minerals, hydrocarbons, brine processes, otolith | ||
94 | microchemistry, sediments, biomarkers. \r\n\r\nContaminants: Mercury, | 72 | microchemistry, sediments, biomarkers. \r\n\r\nContaminants: Mercury, | ||
95 | trace metals, PAHs, source, transport, transformation, pathways, | 73 | trace metals, PAHs, source, transport, transformation, pathways, | ||
96 | bioaccumulations, marine ecosystems, marine chemistry. \r\nEarth | 74 | bioaccumulations, marine ecosystems, marine chemistry. \r\nEarth | ||
97 | Observation Science: Active and passive microwave, LiDAR, EM | 75 | Observation Science: Active and passive microwave, LiDAR, EM | ||
98 | induction, spatial-temporal analysis, forward and inverse scattering | 76 | induction, spatial-temporal analysis, forward and inverse scattering | ||
99 | models, complex permittivity, ocean colour, ocean surface roughness, | 77 | models, complex permittivity, ocean colour, ocean surface roughness, | ||
100 | NIR, TIR, satellite telemetry, GPS. Ice-Associated Biology: | 78 | NIR, TIR, satellite telemetry, GPS. Ice-Associated Biology: | ||
101 | Biophysical processes, primary production; ice algae, ice | 79 | Biophysical processes, primary production; ice algae, ice | ||
102 | microbiology, bio-optics, under-ice phytoplankton. \r\n\r\nInland | 80 | microbiology, bio-optics, under-ice phytoplankton. \r\n\r\nInland | ||
103 | Lakes and Waters: Hydrologic connectivity, watershed systems, sediment | 81 | Lakes and Waters: Hydrologic connectivity, watershed systems, sediment | ||
104 | transport, nutrient transport, contaminants, landscape processes, | 82 | transport, nutrient transport, contaminants, landscape processes, | ||
105 | remote sensing, freshwater-marine coupling. Marine Mammals: Seals, | 83 | remote sensing, freshwater-marine coupling. Marine Mammals: Seals, | ||
106 | whales, habitat, conservation, satellite telemetry, distribution, | 84 | whales, habitat, conservation, satellite telemetry, distribution, | ||
107 | population studies, prey behaviour, bioacoustics.\r\n\r\nModelling: | 85 | population studies, prey behaviour, bioacoustics.\r\n\r\nModelling: | ||
108 | Simulation of sea ice and oceanic regional processes, Nucleus for | 86 | Simulation of sea ice and oceanic regional processes, Nucleus for | ||
109 | European Modelling of the Ocean (NEMO), ice-ocean modelling and | 87 | European Modelling of the Ocean (NEMO), ice-ocean modelling and | ||
110 | interactions, hind cast simulations and projections for sea ice state | 88 | interactions, hind cast simulations and projections for sea ice state | ||
111 | and ocean variables based on CMIP5 scenarios and MIROC5 forcing, | 89 | and ocean variables based on CMIP5 scenarios and MIROC5 forcing, | ||
112 | validation.\r\n\r\nOceanography: Circulation, temperature, in-flow and | 90 | validation.\r\n\r\nOceanography: Circulation, temperature, in-flow and | ||
113 | out-flow shelves, water dynamics, microturbulence, Beaufort Gyre, eddy | 91 | out-flow shelves, water dynamics, microturbulence, Beaufort Gyre, eddy | ||
114 | correlations.\r\n\r\nSea Ice Geophysics:Thermodynamic and dynamic | 92 | correlations.\r\n\r\nSea Ice Geophysics:Thermodynamic and dynamic | ||
115 | processes, extreme ice features and hazards, snow, ridges, | 93 | processes, extreme ice features and hazards, snow, ridges, | ||
116 | polynyas.\r\n\r\nTraditional and Local Knowledge: Indigenous cultures, | 94 | polynyas.\r\n\r\nTraditional and Local Knowledge: Indigenous cultures, | ||
117 | Inuit, Inuvialuit, oral history, toponomy, mobility and settlement, | 95 | Inuit, Inuvialuit, oral history, toponomy, mobility and settlement, | ||
118 | hunting, food security, sea ice use, community-based research, | 96 | hunting, food security, sea ice use, community-based research, | ||
119 | community-based monitoring, two ways of knowing.", | 97 | community-based monitoring, two ways of knowing.", | ||
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121 | "image_url": "2017-11-21-151022.363970CEOSCMYK.jpg", | 99 | "image_url": "2017-11-21-151022.363970CEOSCMYK.jpg", | ||
122 | "is_organization": true, | 100 | "is_organization": true, | ||
123 | "name": "ceos2", | 101 | "name": "ceos2", | ||
124 | "state": "active", | 102 | "state": "active", | ||
125 | "title": "CEOS", | 103 | "title": "CEOS", | ||
126 | "type": "organization" | 104 | "type": "organization" | ||
127 | }, | 105 | }, | ||
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216 | "title": "Baysys Field Reports", | 194 | "title": "Baysys Field Reports", | ||
217 | "type": "publication", | 195 | "type": "publication", | ||
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219 | "version": "1.0" | 197 | "version": "1.0" | ||
220 | } | 198 | } |