Changes
On September 15, 2022 at 3:45:29 PM CDT, Claire Herbert:
-
Updated description of resource Stories from the Field in The Manitoba Great Lakes Program from
Click the link above to view the field stories from the Manitoba Great Lakes Program webpage. Students in CEOS conduct research that contributes to the global conversation on climate change and its effects on our planet. From their field research, they write stories and bring photos back from their experiences.
to**Click the link above to view the field stories from the Manitoba Great Lakes Program webpage.** Students in CEOS conduct research that contributes to the global conversation on climate change and its effects on our planet. From their field research, they write stories and bring photos back from their experiences.
f | 1 | { | f | 1 | { |
2 | "Creator": "Creator", | 2 | "Creator": "Creator", | ||
3 | "GeoLocation": "Lake Winnipeg Basin,Manitoba Great Lakes", | 3 | "GeoLocation": "Lake Winnipeg Basin,Manitoba Great Lakes", | ||
4 | "Identifier": "10.5203/2nq5-pc53", | 4 | "Identifier": "10.5203/2nq5-pc53", | ||
5 | "IdentifierType": "DOI", | 5 | "IdentifierType": "DOI", | ||
6 | "PublicationYear": "2022", | 6 | "PublicationYear": "2022", | ||
7 | "Publisher": "CanWIN", | 7 | "Publisher": "CanWIN", | ||
8 | "ResourceType": "Online Resource", | 8 | "ResourceType": "Online Resource", | ||
9 | "ResourceTypeGeneral": "Collection", | 9 | "ResourceTypeGeneral": "Collection", | ||
10 | "Rights": "Creative Commons Attribution 4.0 International", | 10 | "Rights": "Creative Commons Attribution 4.0 International", | ||
11 | "accessTerms": "CanWIN datasets are licensed individually, however | 11 | "accessTerms": "CanWIN datasets are licensed individually, however | ||
12 | most are licensed under the Creative Commons Attribution 4.0 | 12 | most are licensed under the Creative Commons Attribution 4.0 | ||
13 | International (CC BY 4.0) Public License. Details for the licence | 13 | International (CC BY 4.0) Public License. Details for the licence | ||
14 | applied can be found using the Licence URL link provided with each | 14 | applied can be found using the Licence URL link provided with each | ||
15 | dataset.\r\n\r\nBy using data and information provided on this site | 15 | dataset.\r\n\r\nBy using data and information provided on this site | ||
16 | you accept the terms and conditions of the License. Unless otherwise | 16 | you accept the terms and conditions of the License. Unless otherwise | ||
17 | specified, the license grants the rights to the public to use and | 17 | specified, the license grants the rights to the public to use and | ||
18 | share the data and results derived therefrom as long as the proper | 18 | share the data and results derived therefrom as long as the proper | ||
19 | acknowledgment is given to the data licensor (citation), that any | 19 | acknowledgment is given to the data licensor (citation), that any | ||
20 | alteration to the data is clearly indicated, and that a link to the | 20 | alteration to the data is clearly indicated, and that a link to the | ||
21 | original data and the license is made available.", | 21 | original data and the license is made available.", | ||
22 | "author": null, | 22 | "author": null, | ||
23 | "author_email": null, | 23 | "author_email": null, | ||
24 | "citation": " ", | 24 | "citation": " ", | ||
25 | "coInvestigators": [ | 25 | "coInvestigators": [ | ||
26 | { | 26 | { | ||
27 | "affiliation": "Centre for Earth Observation Science - | 27 | "affiliation": "Centre for Earth Observation Science - | ||
28 | University of Manitoba", | 28 | University of Manitoba", | ||
29 | "contributorName": "Papakyriakou, Tim", | 29 | "contributorName": "Papakyriakou, Tim", | ||
30 | "contributorType": "ProjectMember", | 30 | "contributorType": "ProjectMember", | ||
31 | "email": "Tim.Papakyriakou@umanitoba.ca", | 31 | "email": "Tim.Papakyriakou@umanitoba.ca", | ||
32 | "nameIdentifier": "" | 32 | "nameIdentifier": "" | ||
33 | }, | 33 | }, | ||
34 | { | 34 | { | ||
35 | "affiliation": "Centre for Earth Observation Science - | 35 | "affiliation": "Centre for Earth Observation Science - | ||
36 | University of Manitoba", | 36 | University of Manitoba", | ||
37 | "contributorName": "Herbert, Claire", | 37 | "contributorName": "Herbert, Claire", | ||
38 | "contributorType": "ProjectManager", | 38 | "contributorType": "ProjectManager", | ||
39 | "email": "Claire.Herbert@umanitoba.ca", | 39 | "email": "Claire.Herbert@umanitoba.ca", | ||
40 | "nameIdentifier": "0000-0003-2724-4200", | 40 | "nameIdentifier": "0000-0003-2724-4200", | ||
41 | "nameIdentifierScheme": "ORCID", | 41 | "nameIdentifierScheme": "ORCID", | ||
42 | "schemeURI": "http://orcid.org/" | 42 | "schemeURI": "http://orcid.org/" | ||
43 | }, | 43 | }, | ||
44 | { | 44 | { | ||
45 | "affiliation": "Centre for Earth Observation Science - | 45 | "affiliation": "Centre for Earth Observation Science - | ||
46 | University of Manitoba", | 46 | University of Manitoba", | ||
47 | "contributorName": "McCullough, Greg", | 47 | "contributorName": "McCullough, Greg", | ||
48 | "contributorType": "ProjectLeader", | 48 | "contributorType": "ProjectLeader", | ||
49 | "email": "Greg.McCullough@umanitoba.ca", | 49 | "email": "Greg.McCullough@umanitoba.ca", | ||
50 | "nameIdentifier": "" | 50 | "nameIdentifier": "" | ||
51 | } | 51 | } | ||
52 | ], | 52 | ], | ||
53 | "contributorType": "DataCurator", | 53 | "contributorType": "DataCurator", | ||
54 | "creator_user_id": "4c109602-71d0-4ebc-b670-92f67b3004fd", | 54 | "creator_user_id": "4c109602-71d0-4ebc-b670-92f67b3004fd", | ||
55 | "descriptionType": "Abstract", | 55 | "descriptionType": "Abstract", | ||
56 | "eastBoundLongitude": "-27.066243609948597", | 56 | "eastBoundLongitude": "-27.066243609948597", | ||
57 | "endDateType": "Other", | 57 | "endDateType": "Other", | ||
58 | "groups": [ | 58 | "groups": [ | ||
59 | { | 59 | { | ||
60 | "description": "Processes and phenomena of the atmosphere \u2013 | 60 | "description": "Processes and phenomena of the atmosphere \u2013 | ||
61 | or \u2018weather and climate\u2019. Examples of data you can find here | 61 | or \u2018weather and climate\u2019. Examples of data you can find here | ||
62 | include weather, atmospheric conditions, climate change info. | 62 | include weather, atmospheric conditions, climate change info. | ||
63 | \r\n\r\nIn CEOS, related research themes include atmospheric science | 63 | \r\n\r\nIn CEOS, related research themes include atmospheric science | ||
64 | and meteorology.", | 64 | and meteorology.", | ||
65 | "display_name": "Atmosphere", | 65 | "display_name": "Atmosphere", | ||
66 | "id": "d5c57e39-a747-4085-ba9c-3cfb44f9d5ef", | 66 | "id": "d5c57e39-a747-4085-ba9c-3cfb44f9d5ef", | ||
67 | "image_display_url": | 67 | "image_display_url": | ||
68 | .ca/data/uploads/group/2021-10-31-211610.563086acinspireatmscond.svg", | 68 | .ca/data/uploads/group/2021-10-31-211610.563086acinspireatmscond.svg", | ||
69 | "name": "modelling", | 69 | "name": "modelling", | ||
70 | "title": "Atmosphere" | 70 | "title": "Atmosphere" | ||
71 | }, | 71 | }, | ||
72 | { | 72 | { | ||
73 | "description": "Image: \"Earth from Space\" by NASA Goddard | 73 | "description": "Image: \"Earth from Space\" by NASA Goddard | ||
74 | Photo and Video is licensed under CC BY 2.0", | 74 | Photo and Video is licensed under CC BY 2.0", | ||
75 | "display_name": "Remote Sensing", | 75 | "display_name": "Remote Sensing", | ||
76 | "id": "3ec49cbb-4da6-4fe8-8d54-5b6ce03b49d9", | 76 | "id": "3ec49cbb-4da6-4fe8-8d54-5b6ce03b49d9", | ||
77 | "image_display_url": | 77 | "image_display_url": | ||
78 | anitoba.ca/data/uploads/group/2022-02-05-222621.346712earthimage.jpg", | 78 | anitoba.ca/data/uploads/group/2022-02-05-222621.346712earthimage.jpg", | ||
79 | "name": "remote-sensing", | 79 | "name": "remote-sensing", | ||
80 | "title": "Remote Sensing" | 80 | "title": "Remote Sensing" | ||
81 | } | 81 | } | ||
82 | ], | 82 | ], | ||
83 | "id": "2f8c057e-a1df-4ff8-8a76-744212ea379a", | 83 | "id": "2f8c057e-a1df-4ff8-8a76-744212ea379a", | ||
84 | "isopen": false, | 84 | "isopen": false, | ||
85 | "keywords": "Carbon fluxes,Climate change,Freshwaters,Lake | 85 | "keywords": "Carbon fluxes,Climate change,Freshwaters,Lake | ||
86 | Manitoba,Lake Waterhen,Lake Winnipeg Basin,Lake | 86 | Manitoba,Lake Waterhen,Lake Winnipeg Basin,Lake | ||
87 | Winnipegosis,Manitoba,Nelson River watershed,Remote sensing data", | 87 | Winnipegosis,Manitoba,Nelson River watershed,Remote sensing data", | ||
88 | "kvSchemeURI": | 88 | "kvSchemeURI": | ||
89 | "https://www.polardata.ca/pdcinput/public/keywordlibrary ", | 89 | "https://www.polardata.ca/pdcinput/public/keywordlibrary ", | ||
90 | "license_id": null, | 90 | "license_id": null, | ||
91 | "license_title": null, | 91 | "license_title": null, | ||
92 | "maintainer": null, | 92 | "maintainer": null, | ||
93 | "maintainer_email": null, | 93 | "maintainer_email": null, | ||
94 | "metadata_created": "2021-07-26T16:46:10.600302", | 94 | "metadata_created": "2021-07-26T16:46:10.600302", | ||
n | 95 | "metadata_modified": "2022-09-15T20:45:08.435380", | n | 95 | "metadata_modified": "2022-09-15T20:45:28.569982", |
96 | "name": "mbgl", | 96 | "name": "mbgl", | ||
97 | "northBoundLatitude": "140.81676721572876", | 97 | "northBoundLatitude": "140.81676721572876", | ||
98 | "notes": "The Manitoba Great Lakes (MBGL) program is led by | 98 | "notes": "The Manitoba Great Lakes (MBGL) program is led by | ||
99 | researchers at the Centre for Earth Observation Science (CEOS) at the | 99 | researchers at the Centre for Earth Observation Science (CEOS) at the | ||
100 | University of Manitoba, and is a multi-disciplinary collaboration | 100 | University of Manitoba, and is a multi-disciplinary collaboration | ||
101 | dedicated to conducting research and providing data for science-based | 101 | dedicated to conducting research and providing data for science-based | ||
102 | decision making in the Hudson Bay Watershed. \r\n\r\nThe upper | 102 | decision making in the Hudson Bay Watershed. \r\n\r\nThe upper | ||
103 | Manitoba Great Lakes (Lake Manitoba, Winnipegosis and Waterhen) | 103 | Manitoba Great Lakes (Lake Manitoba, Winnipegosis and Waterhen) | ||
104 | include the 27th (Winnipegosis) and 32nd (Manitoba) largest lakes in | 104 | include the 27th (Winnipegosis) and 32nd (Manitoba) largest lakes in | ||
105 | the world. They are important drinking water sources for the people | 105 | the world. They are important drinking water sources for the people | ||
106 | who live near their shores, and important recreational and fisheries | 106 | who live near their shores, and important recreational and fisheries | ||
107 | resources for the region and the Province as a whole. Moreover, they | 107 | resources for the region and the Province as a whole. Moreover, they | ||
108 | help to protect Lake Winnipeg by filtering nutrients and contaminants | 108 | help to protect Lake Winnipeg by filtering nutrients and contaminants | ||
109 | in runoff from its western watershed. In particular, the operation of | 109 | in runoff from its western watershed. In particular, the operation of | ||
110 | the Portage Diversion during flood events has effectively shifted | 110 | the Portage Diversion during flood events has effectively shifted | ||
111 | significant fractions of the Assiniboine River nutrient and | 111 | significant fractions of the Assiniboine River nutrient and | ||
112 | contaminant load from the south basin of Lake Winnipeg to the south | 112 | contaminant load from the south basin of Lake Winnipeg to the south | ||
113 | basin of Lake Manitoba, with undocumented impacts on the latter. | 113 | basin of Lake Manitoba, with undocumented impacts on the latter. | ||
114 | \r\n<br /> \r\nCurrently, the physical, chemical, biological and | 114 | \r\n<br /> \r\nCurrently, the physical, chemical, biological and | ||
115 | geological processes in the lakes are not well understood. Therefore, | 115 | geological processes in the lakes are not well understood. Therefore, | ||
116 | we have a poor ability to predict responses to change in factors such | 116 | we have a poor ability to predict responses to change in factors such | ||
117 | as climate, fishing pressure, and nutrient or contaminant loading from | 117 | as climate, fishing pressure, and nutrient or contaminant loading from | ||
118 | the watershed, or to understand impacts carried downstream to Lake | 118 | the watershed, or to understand impacts carried downstream to Lake | ||
119 | Winnipeg, into Hudson Bay and the arctic. For example, climate change | 119 | Winnipeg, into Hudson Bay and the arctic. For example, climate change | ||
120 | impacts include direct lake warming, which intensifies in-lake | 120 | impacts include direct lake warming, which intensifies in-lake | ||
121 | chemical and biological processes, and increasingly intense | 121 | chemical and biological processes, and increasingly intense | ||
122 | precipitation events. It is likely that this has led to increased | 122 | precipitation events. It is likely that this has led to increased | ||
123 | runoff and more frequent flooding, and hence, increasing nutrient and | 123 | runoff and more frequent flooding, and hence, increasing nutrient and | ||
124 | contaminant transport from the watershed to the lakes, but we have no | 124 | contaminant transport from the watershed to the lakes, but we have no | ||
125 | data to support this speculation. In Lake Manitoba, commercial catch | 125 | data to support this speculation. In Lake Manitoba, commercial catch | ||
126 | of the most valuable species, pickerel, has declined by more than half | 126 | of the most valuable species, pickerel, has declined by more than half | ||
127 | since the 1980s. This may be due to pike in-migration through the | 127 | since the 1980s. This may be due to pike in-migration through the | ||
128 | Portage Diversion, or to high fishing pressure; we have too little | 128 | Portage Diversion, or to high fishing pressure; we have too little | ||
129 | information to know the cause. Most recently, in the summer of 2021, | 129 | information to know the cause. Most recently, in the summer of 2021, | ||
130 | zebra mussel larvae were discovered in Lake Manitoba; again, without | 130 | zebra mussel larvae were discovered in Lake Manitoba; again, without | ||
131 | better information, the impact of this invasive species is a matter of | 131 | better information, the impact of this invasive species is a matter of | ||
132 | conjecture. Overall, lake management and governance are being decided | 132 | conjecture. Overall, lake management and governance are being decided | ||
133 | without adequate scientific support. \r\n<br /> \r\nThe MBGL program | 133 | without adequate scientific support. \r\n<br /> \r\nThe MBGL program | ||
134 | deploys moorings to measure physical and biological parameters in the | 134 | deploys moorings to measure physical and biological parameters in the | ||
135 | lakes. Through various initiatives, including graduate programs, we | 135 | lakes. Through various initiatives, including graduate programs, we | ||
136 | also collect nutrient, biological and physical data from the MBGL | 136 | also collect nutrient, biological and physical data from the MBGL | ||
137 | lakes as well as the surrounding watersheds. Other projects include | 137 | lakes as well as the surrounding watersheds. Other projects include | ||
138 | studying nutrient forcing of algal biomass and associated algal | 138 | studying nutrient forcing of algal biomass and associated algal | ||
139 | toxins. We look at water quality indicators such as chlorophyll, | 139 | toxins. We look at water quality indicators such as chlorophyll, | ||
140 | suspended solids and dissolved organic carbon and can use them to | 140 | suspended solids and dissolved organic carbon and can use them to | ||
141 | create visualizations such as maps of chlorophyll concentration in | 141 | create visualizations such as maps of chlorophyll concentration in | ||
142 | surface water. These methods combined with satellite data can be used | 142 | surface water. These methods combined with satellite data can be used | ||
143 | for early detection of algal blooms and identify potential sites where | 143 | for early detection of algal blooms and identify potential sites where | ||
144 | algal toxins may occur.\r\n<br />\r\nThrough our multi-disciplinary | 144 | algal toxins may occur.\r\n<br />\r\nThrough our multi-disciplinary | ||
145 | research the MBGL program will provide biological and physical data to | 145 | research the MBGL program will provide biological and physical data to | ||
146 | support science-based decision making in the Hudson Bay Watershed, at | 146 | support science-based decision making in the Hudson Bay Watershed, at | ||
147 | local, regional and hemispherical scales", | 147 | local, regional and hemispherical scales", | ||
148 | "num_resources": 2, | 148 | "num_resources": 2, | ||
149 | "num_tags": 10, | 149 | "num_tags": 10, | ||
150 | "organization": { | 150 | "organization": { | ||
151 | "approval_status": "approved", | 151 | "approval_status": "approved", | ||
152 | "created": "2017-07-21T13:15:49.935872", | 152 | "created": "2017-07-21T13:15:49.935872", | ||
153 | "description": "The Centre for Earth Observation Science (CEOS) | 153 | "description": "The Centre for Earth Observation Science (CEOS) | ||
154 | was established in 1994 with a mandate to research, preserve and | 154 | was established in 1994 with a mandate to research, preserve and | ||
155 | communicate knowledge of Earth system processes using the technologies | 155 | communicate knowledge of Earth system processes using the technologies | ||
156 | of Earth Observation Science. Research is multidisciplinary and | 156 | of Earth Observation Science. Research is multidisciplinary and | ||
157 | collaborative seeking to understand the complex interrelationships | 157 | collaborative seeking to understand the complex interrelationships | ||
158 | between elements of Earth systems, and how these systems will likely | 158 | between elements of Earth systems, and how these systems will likely | ||
159 | respond to climate change. Although researchers have worked in many | 159 | respond to climate change. Although researchers have worked in many | ||
160 | regions, the Arctic marine system has always been a unifying focus of | 160 | regions, the Arctic marine system has always been a unifying focus of | ||
161 | activity.\r\n\r\nIn 2012, CEOS, along with the Greenland Climate | 161 | activity.\r\n\r\nIn 2012, CEOS, along with the Greenland Climate | ||
162 | Research Centre (GCRC, Nuuk, Greenland) and the Arctic Research Centre | 162 | Research Centre (GCRC, Nuuk, Greenland) and the Arctic Research Centre | ||
163 | (ARC, Aarhus, Denmark) established the Arctic Science Partnership, | 163 | (ARC, Aarhus, Denmark) established the Arctic Science Partnership, | ||
164 | thereby integrating academic and research initiatives.\r\n\r\nAreas of | 164 | thereby integrating academic and research initiatives.\r\n\r\nAreas of | ||
165 | existing research activity are divided among key themes:\r\n\r\nArctic | 165 | existing research activity are divided among key themes:\r\n\r\nArctic | ||
166 | Anthropology/Paleoclimatology: LiDAR scanning and digital site | 166 | Anthropology/Paleoclimatology: LiDAR scanning and digital site | ||
167 | preservation, archaeo-geophysics, permafrost degredation, lithic | 167 | preservation, archaeo-geophysics, permafrost degredation, lithic | ||
168 | morphometrics, zooarchaeology, proxy studies, paleodistribution of sea | 168 | morphometrics, zooarchaeology, proxy studies, paleodistribution of sea | ||
169 | ice, landscape learning, Paleo-Eskimo culture, Thule Inuit culture, | 169 | ice, landscape learning, Paleo-Eskimo culture, Thule Inuit culture, | ||
170 | ethnographic analogy, traditional knowledge, climate change and | 170 | ethnographic analogy, traditional knowledge, climate change and | ||
171 | northern heritage resource management.\r\n\r\nAtmospheric | 171 | northern heritage resource management.\r\n\r\nAtmospheric | ||
172 | Studies/Meteorology: Boundary layer, precipitation, clouds, storms and | 172 | Studies/Meteorology: Boundary layer, precipitation, clouds, storms and | ||
173 | extreme weather, circulation, eddy correlations, polar vortex, | 173 | extreme weather, circulation, eddy correlations, polar vortex, | ||
174 | climate, teleconnections, geophysical fluid dynamics, flux and energy | 174 | climate, teleconnections, geophysical fluid dynamics, flux and energy | ||
175 | budgets, ocean-sea ice-atmosphere interface, radiative transfer, ice | 175 | budgets, ocean-sea ice-atmosphere interface, radiative transfer, ice | ||
176 | albedo feedback, cloud radiative forcing, pCO2. | 176 | albedo feedback, cloud radiative forcing, pCO2. | ||
177 | \r\n\r\nBiogeochemistry: Organic carbon, greenhouse gases, bubbles, | 177 | \r\n\r\nBiogeochemistry: Organic carbon, greenhouse gases, bubbles, | ||
178 | Ikaite, carbonate chemistry, CO2 fluxes, mercury and other trace | 178 | Ikaite, carbonate chemistry, CO2 fluxes, mercury and other trace | ||
179 | metals, minerals, hydrocarbons, brine processes, otolith | 179 | metals, minerals, hydrocarbons, brine processes, otolith | ||
180 | microchemistry, sediments, biomarkers. \r\n\r\nContaminants: Mercury, | 180 | microchemistry, sediments, biomarkers. \r\n\r\nContaminants: Mercury, | ||
181 | trace metals, PAHs, source, transport, transformation, pathways, | 181 | trace metals, PAHs, source, transport, transformation, pathways, | ||
182 | bioaccumulations, marine ecosystems, marine chemistry. \r\nEarth | 182 | bioaccumulations, marine ecosystems, marine chemistry. \r\nEarth | ||
183 | Observation Science: Active and passive microwave, LiDAR, EM | 183 | Observation Science: Active and passive microwave, LiDAR, EM | ||
184 | induction, spatial-temporal analysis, forward and inverse scattering | 184 | induction, spatial-temporal analysis, forward and inverse scattering | ||
185 | models, complex permittivity, ocean colour, ocean surface roughness, | 185 | models, complex permittivity, ocean colour, ocean surface roughness, | ||
186 | NIR, TIR, satellite telemetry, GPS. Ice-Associated Biology: | 186 | NIR, TIR, satellite telemetry, GPS. Ice-Associated Biology: | ||
187 | Biophysical processes, primary production; ice algae, ice | 187 | Biophysical processes, primary production; ice algae, ice | ||
188 | microbiology, bio-optics, under-ice phytoplankton. \r\n\r\nInland | 188 | microbiology, bio-optics, under-ice phytoplankton. \r\n\r\nInland | ||
189 | Lakes and Waters: Hydrologic connectivity, watershed systems, sediment | 189 | Lakes and Waters: Hydrologic connectivity, watershed systems, sediment | ||
190 | transport, nutrient transport, contaminants, landscape processes, | 190 | transport, nutrient transport, contaminants, landscape processes, | ||
191 | remote sensing, freshwater-marine coupling. Marine Mammals: Seals, | 191 | remote sensing, freshwater-marine coupling. Marine Mammals: Seals, | ||
192 | whales, habitat, conservation, satellite telemetry, distribution, | 192 | whales, habitat, conservation, satellite telemetry, distribution, | ||
193 | population studies, prey behaviour, bioacoustics.\r\n\r\nModelling: | 193 | population studies, prey behaviour, bioacoustics.\r\n\r\nModelling: | ||
194 | Simulation of sea ice and oceanic regional processes, Nucleus for | 194 | Simulation of sea ice and oceanic regional processes, Nucleus for | ||
195 | European Modelling of the Ocean (NEMO), ice-ocean modelling and | 195 | European Modelling of the Ocean (NEMO), ice-ocean modelling and | ||
196 | interactions, hind cast simulations and projections for sea ice state | 196 | interactions, hind cast simulations and projections for sea ice state | ||
197 | and ocean variables based on CMIP5 scenarios and MIROC5 forcing, | 197 | and ocean variables based on CMIP5 scenarios and MIROC5 forcing, | ||
198 | validation.\r\n\r\nOceanography: Circulation, temperature, in-flow and | 198 | validation.\r\n\r\nOceanography: Circulation, temperature, in-flow and | ||
199 | out-flow shelves, water dynamics, microturbulence, Beaufort Gyre, eddy | 199 | out-flow shelves, water dynamics, microturbulence, Beaufort Gyre, eddy | ||
200 | correlations.\r\n\r\nSea Ice Geophysics:Thermodynamic and dynamic | 200 | correlations.\r\n\r\nSea Ice Geophysics:Thermodynamic and dynamic | ||
201 | processes, extreme ice features and hazards, snow, ridges, | 201 | processes, extreme ice features and hazards, snow, ridges, | ||
202 | polynyas.\r\n\r\nTraditional and Local Knowledge: Indigenous cultures, | 202 | polynyas.\r\n\r\nTraditional and Local Knowledge: Indigenous cultures, | ||
203 | Inuit, Inuvialuit, oral history, toponomy, mobility and settlement, | 203 | Inuit, Inuvialuit, oral history, toponomy, mobility and settlement, | ||
204 | hunting, food security, sea ice use, community-based research, | 204 | hunting, food security, sea ice use, community-based research, | ||
205 | community-based monitoring, two ways of knowing.", | 205 | community-based monitoring, two ways of knowing.", | ||
206 | "id": "9e21f6b6-d13f-4ba2-a379-fd962f507071", | 206 | "id": "9e21f6b6-d13f-4ba2-a379-fd962f507071", | ||
207 | "image_url": "2021-11-13-003953.952874UMLogoHORZ.jpg", | 207 | "image_url": "2021-11-13-003953.952874UMLogoHORZ.jpg", | ||
208 | "is_organization": true, | 208 | "is_organization": true, | ||
209 | "name": "ceos", | 209 | "name": "ceos", | ||
210 | "state": "active", | 210 | "state": "active", | ||
211 | "title": "Centre for Earth Observation Science", | 211 | "title": "Centre for Earth Observation Science", | ||
212 | "type": "organization" | 212 | "type": "organization" | ||
213 | }, | 213 | }, | ||
214 | "owner_org": "9e21f6b6-d13f-4ba2-a379-fd962f507071", | 214 | "owner_org": "9e21f6b6-d13f-4ba2-a379-fd962f507071", | ||
215 | "principalInvestigators": [ | 215 | "principalInvestigators": [ | ||
216 | { | 216 | { | ||
217 | "affiliation": "Centre for Earth Observation Science - | 217 | "affiliation": "Centre for Earth Observation Science - | ||
218 | University of Manitoba", | 218 | University of Manitoba", | ||
219 | "creatorName": "Barber, David", | 219 | "creatorName": "Barber, David", | ||
220 | "email": "david.barber@umanitoba.ca", | 220 | "email": "david.barber@umanitoba.ca", | ||
221 | "nameIdentifier": "0000-0001-9466-3291", | 221 | "nameIdentifier": "0000-0001-9466-3291", | ||
222 | "nameIdentifierScheme": "ORCID", | 222 | "nameIdentifierScheme": "ORCID", | ||
223 | "nameType": "Personal", | 223 | "nameType": "Personal", | ||
224 | "schemeURI": "http://orcid.org/" | 224 | "schemeURI": "http://orcid.org/" | ||
225 | } | 225 | } | ||
226 | ], | 226 | ], | ||
227 | "private": false, | 227 | "private": false, | ||
228 | "projectDataCuratorAffiliation": "Centre for Earth Observation | 228 | "projectDataCuratorAffiliation": "Centre for Earth Observation | ||
229 | Science - University of Manitoba", | 229 | Science - University of Manitoba", | ||
230 | "projectDataCuratorEmail": "portalco@umanitoba.ca", | 230 | "projectDataCuratorEmail": "portalco@umanitoba.ca", | ||
231 | "projectDataCuratorName": "Herbert, Claire", | 231 | "projectDataCuratorName": "Herbert, Claire", | ||
232 | "projectEndDate": "", | 232 | "projectEndDate": "", | ||
233 | "projectImage": | 233 | "projectImage": | ||
234 | lic/2021-11/manitoba-great-lakes-program-hero-boat.jpg?itok=lGrLZpnX", | 234 | lic/2021-11/manitoba-great-lakes-program-hero-boat.jpg?itok=lGrLZpnX", | ||
235 | "projectStartDate": "2012-04-01", | 235 | "projectStartDate": "2012-04-01", | ||
236 | "relatedIdentifier": | 236 | "relatedIdentifier": | ||
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265 | "description": "See where we are when we're in the field. View | 265 | "description": "See where we are when we're in the field. View | ||
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290 | from the Manitoba Great Lakes Program webpage. Students in CEOS | 290 | from the Manitoba Great Lakes Program webpage.** Students in CEOS | ||
291 | conduct research that contributes to the global conversation on | 291 | conduct research that contributes to the global conversation on | ||
292 | climate change and its effects on our planet. From their field | 292 | climate change and its effects on our planet. From their field | ||
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