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64 results for “Olympics”
Wind River Experimental Forest site, station Washington Region 4, East Olympic Cascades Foothills, study of Palmer Drought Severity Index in units of dimensionless on a yearly timescale
The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from Wind River Experimental Forest (WIN) contains Palmer Drought Severity Index measurements in dimensionless units and were aggregated to a yearly timescale.
Olympic Games 2020
<p>This dataset includes CSV files about players of games. We gathered the list of games from <a href="https://en.wikipedia.org/wiki/2020_Summer_Olympics">https://en.wikipedia.org/wiki/2020_Summer_Olympics</a>. The data in the CSV files are gathered from the below resources:</p> <p> <a href="http://www.adventurestats.com/tables/8000ergeo.shtml">http://www.adventurestats.com/tables/8000ergeo.shtml</a><a href="http://www.bbc.com/news/magazine-28363129">http://www.bbc.com/news/magazine-28363129</a><a href="https://www.statcrunch.com/app/index.php?dataid=614855">https://www.statcrunch.com/app/index.php?dataid=614855</a><a href="http://www.stadiumguide.com/figures-and-statistics/lists/europes-largest-football-stadiums/">http://www.stadiumguide.com/figures-and-statistics/lists/europes-largest-football-stadiums/</a><a href="https://data.world/sports/olympics/file/outturn%20sports-related%20costs%20of%20the%20Olympic%20Games%20.csv">https://data.world/sports/olympics/file/outturn%20sports-related%20costs%20of%20the%20Olympic%20Games%20.csv</a><a href="http://www.bbc.com/news/magazine-28363129">http://www.bbc.com/news/magazine-28363129</a><a href="https://owlcation.com/stem/TopTenMountainRanges">https://owlcation.com/stem/TopTenMountainRanges</a><a href="https://github.com/jokecamp/FootballData/blob/master/MLS/MLS%20-%202015/mls_players_2015-01-12.csv">https://github.com/jokecamp/FootballData/blob/master/MLS/MLS%20-%202015/mls_players_2015-01-12.csv</a><a href="http://www.topendsports.com/events/summer/sports/number.htm">http://www.topendsports.com/events/summer/sports/number.htm</a><a href="http://newsok.sportsdirectinc.com/golf/pga-players.aspx?page=/data/pga/players/A_players.html">http://newsok.sportsdirectinc.com/golf/pga-players.aspx?page=/data/pga/players/A_players.html</a></p>
Data from: Postglacial climate and fire-mediated vegetation change on the western Olympic Peninsula, Washington
The mode and tempo of forest compositional change during periods of rapid climate change, including the potential for the fire regime to produce non-linear relationships between climate and vegetation, is a long-standing theme of forest ecological research. In the old conifer forests of the coastal Pacific Northwest, fire disturbances are sufficiently rare that their relation to climate and their ecological effects are poorly understood. We used a 14,700-year high-resolution sediment record from Yahoo Lake on the Olympic Peninsula to examine vegetation (landscape vegetation from pollen and local vegetation from macrofossils) and fire (landscape fire from total charcoal and local fire from charcoal peaks) in conjunction with independent records of climate. We hypothesized that the successional stage of the local forest will exhibit alternate stable states over a range of fire activity, that species turnover will increase abruptly above a certain level of fire activity and that both responses would be more gradual at the landscape scale than the local scale. Supporting these hypotheses, at the local scale we found strong evidence for alternate stable states of late vs. early successional communities and inertia of species turnover to changing fire activity. At the landscape scale, vegetation responded more gradually to changing fire activity. From 14,700 to 7000 years ago, high landscape vegetation turnover occurred along with high landscape fire activity, especially during the warm summers of the early Holocene. In several instances local species turned over completely following fire events but several centuries after climate change. In contrast, during the last 7000 years the local forest composition was dominated by late-successional species with little species turnover despite periods of moderate fire activity. We suggest that the relatively minor climate fluctuations of the past 7000 years were not sufficient to cause large-scale species turnover after fire. The Yahoo Lake fire and vegetation record of the early Holocene provides a model for dramatic ecosystem change following an anticipated shift to warmer summer temperatures.
Antti Kasvio's Olympic Bronze Medal 1992
Antti Kasvio became the first Finnish Olympic swimming medallist in 72 years by winning bronze in men's 200 metres freestyle at the 1992 Olympic Games in Barcelona. All in all, Finland has won only four Olympic medals in swimming. The obverse side of the Summer Olympic medals was updated for the 1992 Games after remaining unaltered since 1928. The motif depicts Nike, the goddess of victory, holding a palm leaf and a laurel wreath. The reverse side features the official logo of the respective Games. The Barcelona 1992 medal was designed by Xavier Corberó. Source: Objaverse 1.0 / Sketchfab
olympic_swimming_dataset
<p>Dataset de la Práctica 1 de la asignatura Tipología y Ciclo de vida de los Datos.</p>
Bridging the gap between total peroxyl radical observations and models by measuring OH reactivity to improve estimates of ozone production: a case study from the 24th Winter Olympics Games-
Open the record for dataset details and reuse information.
Subspecies and Distribution. M. e. erminea Linnaeus, 1758 — Finland, Norway, NW Russia, and Sweden. M. e. aestiva Kerr, 1792 — most of mainland N & C Europe to C Asia in Kazakhstan, Kyrgyzstan, and Tajikistan. M. e. alascensis Merriam, 1896 — S Alaska. M. e. anguinae Hall, 1932 — SW Canada (Vancouver I, British Columbia). M. e. arctica Merriam, 1896 — Alaska and NW Canada. M. e. bangsi Hall, 1945 — C Canada and NC USA. M. e. celenda Hall, 1944 — Alaska (Prince of Wales I). M.e. cicognanii Bonaparte, 1838 — SE Canada and NE USA. M. e. fallenda Hall, 1945 — W Canada (British Columbia) and NW USA (N Washington). M. e. ferghanae Thomas, 1895 — Afghanistan, N India, and Pakistan. M.e. gulosa Hall, 1945 — NW USA (E Washington). M.e. haidarum Preble, 1898 — W Canada (Queen Charlotte Is, British Columbia). M.e. hibernica Thomas & Barrett-Hamilton, 1895 — Ireland. M.e. imatis Hall, 1944 — Alaska (Baranof I). M.e. invicta Hall, 1945 — SW Canada (Alberta) and NW USA (Idaho & Montana). M.e. kadiacensis Merriam, 1896 — Alaska (Kodiak I). M.e. kaneti Baird, 1857 — NE China, Russia (E Siberia). M.e. karaginensis Jurgenson, 1936 — NE Russia (Karaginsky I). M.e. lymani Hollister, 1912 — E Russia (Altai Mts, Siberia). M.e. minima Cavazza, 1912 — Switzerland. M.e. mongolica Ognev, 1928 — NW China and Mongolian Altai. M. e. muricus Bangs, 1899 — USA (N California, Colorado, Idaho, New Mexico, Nevada, Oregon, South Dakota, Utah & Wyoming). M. e. nippon Cabrera, 1913 — Japan. M.e. olympica Hall, 1945 — NW USA (Olympic Peninsula, Washington). M.e. polaris Barrett-Hamilton, 1904 — Greenland. M.e.richardsonii Bonaparte, 1838 — N Canada. M.e. ricinae G. S. Miller, 1907 — Scotland (Islay I). M.e.salva Hall, 1944 — SE Alaska (Admiralty I). M.e.seclusa Hall, 1944 — SE Alaska (Suemez I). M.e.sempler Sutton & Hamilton, 1932 — Canada (Franklin & Keewatin Districts). M.e.stabilis Barrett-Hamilton, 1904 — Great Britain. M.e.streatori Merriam, 1896 — W USA (NE California, Oregon & coastal Washington). M.e.teberdina Kornejv, 1941 — Russian Caucasus. M.e. tobolica Ognev, 1923 — W Siberia. Introduced to New Zealand. in Mustelidae
Subspecies and Distribution. M. e. erminea Linnaeus, 1758 — Finland, Norway, NW Russia, and Sweden. M. e. aestiva Kerr, 1792 — most of mainland N & C Europe to C Asia in Kazakhstan, Kyrgyzstan, and Tajikistan. M. e. alascensis Merriam, 1896 — S Alaska. M. e. anguinae Hall, 1932 — SW Canada (Vancouver I, British Columbia). M. e. arctica Merriam, 1896 — Alaska and NW Canada. M. e. bangsi Hall, 1945 — C Canada and NC USA. M. e. celenda Hall, 1944 — Alaska (Prince of Wales I). M.e. cicognanii Bonaparte, 1838 — SE Canada and NE USA. M. e. fallenda Hall, 1945 — W Canada (British Columbia) and NW USA (N Washington). M. e. ferghanae Thomas, 1895 — Afghanistan, N India, and Pakistan. M.e. gulosa Hall, 1945 — NW USA (E Washington). M.e. haidarum Preble, 1898 — W Canada (Queen Charlotte Is, British Columbia). M.e. hibernica Thomas & Barrett-Hamilton, 1895 — Ireland. M.e. imatis Hall, 1944 — Alaska (Baranof I). M.e. invicta Hall, 1945 — SW Canada (Alberta) and NW USA (Idaho & Montana). M.e. kadiacensis Merriam, 1896 — Alaska (Kodiak I). M.e. kaneti Baird, 1857 — NE China, Russia (E Siberia). M.e. karaginensis Jurgenson, 1936 — NE Russia (Karaginsky I). M.e. lymani Hollister, 1912 — E Russia (Altai Mts, Siberia). M.e. minima Cavazza, 1912 — Switzerland. M.e. mongolica Ognev, 1928 — NW China and Mongolian Altai. M. e. muricus Bangs, 1899 — USA (N California, Colorado, Idaho, New Mexico, Nevada, Oregon, South Dakota, Utah & Wyoming). M. e. nippon Cabrera, 1913 — Japan. M.e. olympica Hall, 1945 — NW USA (Olympic Peninsula, Washington). M.e. polaris Barrett-Hamilton, 1904 — Greenland. M.e.richardsonii Bonaparte, 1838 — N Canada. M.e. ricinae G. S. Miller, 1907 — Scotland (Islay I). M.e.salva Hall, 1944 — SE Alaska (Admiralty I). M.e.seclusa Hall, 1944 — SE Alaska (Suemez I). M.e.sempler Sutton & Hamilton, 1932 — Canada (Franklin & Keewatin Districts). M.e.stabilis Barrett-Hamilton, 1904 — Great Britain. M.e.streatori Merriam, 1896 — W USA (NE California, Oregon & coastal Washington). M.e.teberdina Kornejv, 1941 — Russian Caucasus. M.e. tobolica Ognev, 1923 — W Siberia. Introduced to New Zealand.
GTN Tutorial: Data Manipulation Olympics
<p>Input datasets for the Galaxy Tutorial on Data manipulation</p>
Subspecies and Distribution. S.t.townsendiiBachman,1839—fromextremeSWBritishColumbia(SWCanada)SthroughWWashingtonandWOregontoNWCalifornia(NWUSA). S. t. olympicus M. L. Johnson & Yates, 1980 — known only from elevations above 1000 m in Olympic National Park, NW Washington (USA). in Talpidae
Subspecies and Distribution. S.t.townsendiiBachman,1839—fromextremeSWBritishColumbia(SWCanada)SthroughWWashingtonandWOregontoNWCalifornia(NWUSA). S. t. olympicus M. L. Johnson & Yates, 1980 — known only from elevations above 1000 m in Olympic National Park, NW Washington (USA).
On following pages: 245. Gray Marmot (Marmota baibacina); 246. Long-tailed Marmot (Marmota caudata); 247. Marmot (Marmota camtschatica); 250. Tarbagan Marmot (Marmota sibirica); 251. Alaska Marmot (Marmota broweri (Marmota flaviventen: 255. Vancouver Island Marmot (Marmota vancouverensis); 256. Olympic Marmot (Marmota leucurus): 259. Utah Prairie Dog (Cynomys parvidens); 260. Gunnison''s Prairie Dog (Cynomys gunnisoni); 261. Mexican Menzbier's Marmot (Marmota menzbieri); 248. Himalayan Marmot (Marmota himalayana); 249. Black-capped); 252. Hoary Marmot (Marmota caligata); 253. Woodchuck (Marmota monax); 254. Yellow-bellied Marmot olympus); 257. Black-tailed Prairie Dog (Cynomys ludovicianus); 258. White-tailed Prairie Dog (Cynomys Prairie Dog (Cynomys mexicanus). in Sciuridae
On following pages: 245. Gray Marmot (Marmota baibacina); 246. Long-tailed Marmot (Marmota caudata); 247. Marmot (Marmota camtschatica); 250. Tarbagan Marmot (Marmota sibirica); 251. Alaska Marmot (Marmota broweri (Marmota flaviventen: 255. Vancouver Island Marmot (Marmota vancouverensis); 256. Olympic Marmot (Marmota leucurus): 259. Utah Prairie Dog (Cynomys parvidens); 260. Gunnison''s Prairie Dog (Cynomys gunnisoni); 261. Mexican Menzbier's Marmot (Marmota menzbieri); 248. Himalayan Marmot (Marmota himalayana); 249. Black-capped); 252. Hoary Marmot (Marmota caligata); 253. Woodchuck (Marmota monax); 254. Yellow-bellied Marmot olympus); 257. Black-tailed Prairie Dog (Cynomys ludovicianus); 258. White-tailed Prairie Dog (Cynomys Prairie Dog (Cynomys mexicanus).
On following pages: 48. Mutable Shrew (Sorex mutabilis); 49. Verapaz Shrew (Sorex veraepacis); 50. Rock Shrew (Sorex Mexican Long-tailed Shrew (Sorex oreopolus); 55. Orizaba Long-tailed Shrew (Sorex orizabae); 56. Chestnut-bellied Shrew (Sorex rohweri): 60. South-eastern Shrew (Sorex longirostris); 61. Masked Shrew (Sorex cinereus); 62. Maryland Shrew Mountain Shrew (Sorex milleri): 66. Preble's Shrew (Sorex preblei); 67. Prairie Shrew (Sorex hayden); 68. Pribilof Island Saint Lawrence Island Shrew (Sorex jackson); 72. Kamchatka Shrew (Sorex camtschaticus); 73. Paramushir Shrew (Sorex (Sorex ornatus); 77. American Water Shrew (Sorex palustris); 78. Western Water Shrew (Sorex navigaton; 79. Glacier Bay Baird's Shrew (Sorex bairdi); 83. Pacific Shrew (Sorex pacificus); 84. Fog Shrew (Sorex sonomae); 85. New Mexico Shrew dispan; 51. Smoky Shrew (Sorex fumeus); 52. Inyo Shrew (Sorex tenellus); 53. Dwarf Shrew (Sorex nanus); 54. (Sorex ventralis); 57. Veracruz Shrew (Sorex veraecrucis); 58. Ixtlan Shrew (Sorex ixtlanensis); 59. Olympic Shrew (Sorex fontinalis); 63. Mount Lyell Shrew (Sorex lyell); 64. Zacatecas Shrew (Sorex emarginatus), 65. Carmen Shrew (Sorex pribilofensis); 69. Barren Ground Shrew (Sorex ugyunak); 70. Portenko's Shrew (Sorex portenkol); 71. leucogasten; 74. American Pygmy Shrew (Sorex hoyi); 75. Vagrant Shrew (Sorex vagrans); 76. Ornate Shrew Water Shrew (Sorex alaskanus); 80. Eastern Water Shrew (Sorex albibarbis); 81. Marsh Shrew (Sorex bendiril); 82. (Sorex neomexicanus); 86. Montane Shrew (Sorex monticolus). in Soricidae
On following pages: 48. Mutable Shrew (Sorex mutabilis); 49. Verapaz Shrew (Sorex veraepacis); 50. Rock Shrew (Sorex Mexican Long-tailed Shrew (Sorex oreopolus); 55. Orizaba Long-tailed Shrew (Sorex orizabae); 56. Chestnut-bellied Shrew (Sorex rohweri): 60. South-eastern Shrew (Sorex longirostris); 61. Masked Shrew (Sorex cinereus); 62. Maryland Shrew Mountain Shrew (Sorex milleri): 66. Preble's Shrew (Sorex preblei); 67. Prairie Shrew (Sorex hayden); 68. Pribilof Island Saint Lawrence Island Shrew (Sorex jackson); 72. Kamchatka Shrew (Sorex camtschaticus); 73. Paramushir Shrew (Sorex (Sorex ornatus); 77. American Water Shrew (Sorex palustris); 78. Western Water Shrew (Sorex navigaton; 79. Glacier Bay Baird's Shrew (Sorex bairdi); 83. Pacific Shrew (Sorex pacificus); 84. Fog Shrew (Sorex sonomae); 85. New Mexico Shrew dispan; 51. Smoky Shrew (Sorex fumeus); 52. Inyo Shrew (Sorex tenellus); 53. Dwarf Shrew (Sorex nanus); 54. (Sorex ventralis); 57. Veracruz Shrew (Sorex veraecrucis); 58. Ixtlan Shrew (Sorex ixtlanensis); 59. Olympic Shrew (Sorex fontinalis); 63. Mount Lyell Shrew (Sorex lyell); 64. Zacatecas Shrew (Sorex emarginatus), 65. Carmen Shrew (Sorex pribilofensis); 69. Barren Ground Shrew (Sorex ugyunak); 70. Portenko's Shrew (Sorex portenkol); 71. leucogasten; 74. American Pygmy Shrew (Sorex hoyi); 75. Vagrant Shrew (Sorex vagrans); 76. Ornate Shrew Water Shrew (Sorex alaskanus); 80. Eastern Water Shrew (Sorex albibarbis); 81. Marsh Shrew (Sorex bendiril); 82. (Sorex neomexicanus); 86. Montane Shrew (Sorex monticolus).
Helsinki 1952 Olympic Torch
The torch of the Helsinki Olympic Games of 1952 was designed by the painter and graphic artist Aukusti Tuhka (1859–1973). The shaft was made of birchwood, the bowl of silver. The length of the torch is 60 cm. The bowl carries a laurel ornament, the Olympic rings and the text: XV OLYMPIA HELSINKI 1952 HELSINGFORS HELSINKI. A separate fire cartridge was placed inside the bowl. The torches were manufactured by the firm Kultakeskus Oy. The total number of torches was 23: sixteen were made of silver, seven of silver-plated brass. After the Games the torches were donated to persons and companies who had assisted in the organisation of relay. The Helsinki 1952 torches are the rarest of all Olympic torches. Source: Objaverse 1.0 / Sketchfab
FIGURES 40–44 in Three new Psammothidium species from lakes of Olympic and Cascade Mountains in Washington State, USA
FIGURES 40–44: Psammothidium alpinum sp. nov., SEM. Figs 40–42. Type material, Snow Lake, sample ANSP WACA019 Fig. 40. External view of raphe valve. Fig. 41. Internal view of raphe valve. Fig. 42. External view of rapheless valve. Fig. 43. Internal view of rapheless valve, Hidden Lake NOCA, sample ANSP WACA018. Fig. 44. Areolae on the internal surface of the valve, Snow Lake, sample ANSP WACA001. Scale bars = 1 µm.
FIGURES 35–39 in Three new Psammothidium species from lakes of Olympic and Cascade Mountains in Washington State, USA
FIGURES 35–39: Psammothidium lacustre sp. nov., SEM. Fig. 35. External view of raphe valve, Hidden Lake NOCA, sample ANSP WACA017. Fig. 36. Internal view of raphe valve, type material, sample ANSP WACA019. Fig. 37. Areolae on internal surface of raphe valve, type material, sample ANSP WACA019. Fig. 38. Internal view of rapheless valve, Hidden Lake NOCA, sample ANSP WACA017. Fig. 39. External view of rapheless valve, type material, sample ANSP WACA019. Scale bars = 1 µm
FIGURES 22–34 in Three new Psammothidium species from lakes of Olympic and Cascade Mountains in Washington State, USA
FIGURES 22–34: LM micrographs of Psammothidium species from Snow Lake, Washington Cascades. Figs 22–31. Psammothidium nivale sp. nov. Figs 22–23. Holotype specimen, slide ANSP GC64684. Figs 32–34. Psammothidium helveticum. Scale bar = 10 µm.
FIGURES 1–21 in Three new Psammothidium species from lakes of Olympic and Cascade Mountains in Washington State, USA
FIGURES 1–21: LM micrographs of Psammothidium species from Snow Lake, Washington Cascades. Figs 1–8. Psammothidium lacustre sp. nov. Figs 1–2. Holotype specimen, slide ANSP GC64860. Figs 9–21. Psammothidium alpinum sp. nov. Figs 9–10. Holotype specimen, slide ANSP GC64862. Scale bar = 10 µm.
Snow storage for Beijing 2022 Winter Olympic and Paralympic Games
<p>The results and associated data</p>
Olympic Mascot Waldi from Munich 1972
Waldi the dachshund was the official mascot of the Munich Olympic Games of 1972. Designed by the German artist Otl Aicher, Waldi was available as a furry toy during the Games. The pin version became available only several years later. Source: Objaverse 1.0 / Sketchfab
The Effect of Imagery Exercises on Attention and Performance in Olympic Archers
ClinicalTrials.gov study NCT06739681. IPD Sharing: YES. Countries: 1. Publications: 8.
Power-speed-endurance Profile (Cycling/Rowing) : Optimize Performance of the French Athletes at the Paris Olympics 2024
ClinicalTrials.gov study NCT05314543. IPD Sharing: NO. Countries: 1. Publications: 0.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.