Works matching DE "TOKYO Bay (Japan)"
Results: 169
Seasonal variation in metabolic rate of plankton community in the inner part of Tokyo Bay.
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- Journal of Oceanography, 2023, v. 79, n. 5, p. 473, doi. 10.1007/s10872-023-00691-8
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- Article
Temporal variations in the surface primary productivity and their causes at a station F3 in the inner Tokyo Bay.
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- Journal of Oceanography, 2023, v. 79, n. 3, p. 253, doi. 10.1007/s10872-023-00679-4
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Hydrographic structures of Tokyo Bay between 1992 and 2019 and evidence of temperature increase; observational results by the training vessel Seiyo-Maru.
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- Journal of Oceanography, 2023, v. 79, n. 3, p. 281, doi. 10.1007/s10872-023-00683-8
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The origin and characteristics of dissolved organic carbon in the highly urbanized coastal waters of Tokyo Bay.
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- Journal of Oceanography, 2023, v. 79, n. 3, p. 241, doi. 10.1007/s10872-023-00678-5
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Occurrence patterns of larval mesopelagic fishes in the mouth of highly eutrophic Tokyo Bay, central Japan.
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- Journal of Oceanography, 2023, v. 79, n. 3, p. 223, doi. 10.1007/s10872-022-00668-z
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- Article
Succession of three dominant diatoms, Skeletonema, Thalassiosira, and Pseudo-nitzschia in the inner area of Tokyo Bay from 2003 to 2017.
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- Journal of Oceanography, 2023, v. 79, n. 3, p. 265, doi. 10.1007/s10872-023-00684-7
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Temporal variation of particulate organic carbon flux at the mouth of Tokyo Bay.
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- Journal of Oceanography, 2023, v. 79, n. 3, p. 199, doi. 10.1007/s10872-022-00660-7
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- Article
Seasonal variation in alkaline phosphatase activity in the central part of Tokyo Bay, 2013.
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- Journal of Oceanography, 2023, v. 79, n. 3, p. 187, doi. 10.1007/s10872-022-00650-9
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- Article
Long-term change in the status of water pollution in Tokyo Bay: recent trend of increasing bottom-water dissolved oxygen concentrations.
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- Journal of Oceanography, 2021, v. 77, n. 6, p. 843, doi. 10.1007/s10872-021-00612-7
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Seasonal variations of dissolved organic matter and nutrients in sediment pore water in the inner part of Tokyo Bay.
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- Journal of Oceanography, 2016, v. 72, n. 6, p. 851, doi. 10.1007/s10872-016-0382-0
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- Article
Calcium carbonate saturation and ocean acidification in Tokyo Bay, Japan.
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- Journal of Oceanography, 2015, v. 71, n. 4, p. 427, doi. 10.1007/s10872-015-0302-8
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- Article
Productivity and grazing impact of Oikopleura dioica (Tunicata, Appendicularia) in Tokyo Bay.
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- Journal of Plankton Research, 2008, v. 30, n. 3, p. 299
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- Article
Abundance decline in the narrow‐ridged finless porpoise population off the Pacific coast of eastern Japan.
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- Population Ecology, 2019, v. 61, n. 3, p. 325, doi. 10.1002/1438-390X.12003
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- Article
Scale dependency in seagrass dynamics: how does the neighboring effect vary with grain of observation?
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- Population Ecology, 2009, v. 51, n. 1, p. 33, doi. 10.1007/s10144-008-0119-z
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- Article
Influences of Storm Water and Combined Sewage Overflow on Tokyo Bay.
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- Environmental Forensics, 2007, v. 8, n. 1/2, p. 173, doi. 10.1080/15275920601180719
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- Article
Tidal current estimation analysis and calculation of tidal power generation potential for a Tokyo Bay model using the extended Kalman filter FEM.
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- JSIAM Letters (Online), 2023, v. 15, p. 89, doi. 10.14495/jsiaml.15.89
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- Article
Urban-scale CFD analysis in support of a climate-sensitive design for the Tokyo Bay area.
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- International Journal of Climatology, 2011, v. 31, n. 2, p. 174, doi. 10.1002/joc.2226
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Numerical Assessment of the 2011 Tohoku Earthquake Tsunami in Ports of Tokyo Bay with the Effectiveness of Floodgates.
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- Journal of Coastal Research, 2013, p. 844, doi. 10.2112/SI65-143.1
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Using Geostatistics to Analyze Prediction Errors from a Simulation Model of Sediment Particle Sizes across Tokyo Bay.
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- Journal of Coastal Research, 2013, v. 29, n. 1, p. 145, doi. 10.2112/JCOASTRES-D-12-00003.1
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Hydrodynamics and Associated Morphological Variations on an Estuarine Intertidal Sand Flat.
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- Journal of Coastal Research, 2007, v. 23, n. 4, p. 1015
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- Article
Numerical Analysis of Wind-Wave Climate Change and Spatial Distribution of Bottom Sediment Properties in Sanbanze Shallows of Tokyo Bay.
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- Journal of Coastal Research, 2007, p. 343, doi. 10.2112/JCR-SI50-067.1
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- Article
Analysis of the Impact of Exemption from Pilotage for 75m and 90m Long Vessels on the Fairway Świnoujście-Szczecin.
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- TransNav: International Journal on Marine Navigation & Safety of Sea Transportation, 2019, v. 13, n. 3, p. 627, doi. 10.12716/1001.13.03.20
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Long-term changes in the assemblage of demersal fishes and invertebrates in relation to environmental variations in Tokyo Bay, Japan.
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- Fisheries Management & Ecology, 2002, v. 9, n. 5, p. 303, doi. 10.1046/j.1365-2400.2002.00313.x
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- Article
Tropical Cyclones Affecting Japan Central Coast and Changing Storm Surge Hazard since 1980.
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- Journal of the Meteorological Society of Japan, 2022, v. 100, n. 3, p. 493, doi. 10.2151/jmsj.2022-024
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Preliminary report on bycatch fish species collected from the Tokyo Submarine Canyon, Japan.
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- ZooKeys, 2019, n. 843, p. 117, doi. 10.3897/zookeys.843.32410
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EVALUATION OF ECOTOXICITY AND FATE OF METHYLATED BUTYLTINS IN SEDIMENTS AND SEAWATER FROM TOKYO BAY, JAPAN.
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- Environmental Toxicology & Chemistry, 2007, v. 26, n. 12, p. 2560, doi. 10.1897/06-599.1
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EVALUATION OF THE ISHIKAWA CELL LINE BIOASSAY FOR THE DETECTION OF ESTROGENIC SUBSTANCES FROM SEDIMENT EXTRACTS.
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- Environmental Toxicology & Chemistry, 2005, v. 24, n. 7, p. 7, doi. 10.1897/04-417R.1
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QUANTITATIVE IDENTIFICATION OF SOURCES OF DIOXIN-LIKE POLYCHLORINATED BIPHENYLS IN SEDIMENTS BY A FACTOR ANALYSIS MODEL AND A CHEMICAL MASS BALANCE MODEL COMBINED WITH MONTE CARLO TECHNIQUES.
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- Environmental Toxicology & Chemistry, 2005, v. 24, n. 2, p. 13, doi. 10.1897/04-0221R.1
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IDENTIFICATION OF POLYCHLORINATED DIBENZO-p-DIOXIN, DIBENZOFURAN, AND COPLANAR POLYCHLORINATED BIPHENYL SOURCES IN TOKYO BAY, JAPAN.
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- Environmental Toxicology & Chemistry, 2002, v. 21, n. 5, p. 991, doi. 10.1897/1551-5028(2002)021<0991:IOPDPD>2.0.CO;2
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Japan's Nuclear Disaster Radiation Still Leaking Recovery Still Years Away.
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- CounterPunch, 2011, v. 18, n. 16, p. 1
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Editorial-The 6th International Workshop on Modeling the Ocean (IWMO 2014).
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- 2017
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- Editorial
The effect of wind on long-term summer water temperature trends in Tokyo Bay, Japan.
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- Ocean Dynamics, 2015, v. 65, n. 6, p. 919, doi. 10.1007/s10236-015-0848-4
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Field measurement and modeling of near-bed sediment transport processes with fluid mud layer in Tokyo Bay.
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- Ocean Dynamics, 2012, v. 62, n. 10-12, p. 1535, doi. 10.1007/s10236-012-0570-4
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Microbial activity and accumulation of organic matter in the burrow of the mud shrimp, Upogebia major (Crustacea: Thalassinidea).
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- Marine Biology, 2008, v. 153, n. 3, p. 277, doi. 10.1007/s00227-007-0802-1
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Growth and reproductive biology of the small penaeid shrimp Trachysalambria curvirostris in Tokyo Bay.
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- Marine Biology, 2007, v. 151, n. 3, p. 961, doi. 10.1007/s00227-006-0536-5
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Verification of lipofuscin-based crustacean ageing: seasonality of lipofuscin accumulation in the stomatopod Oratosquilla oratoria in relation to water temperature.
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- Marine Biology, 2006, v. 150, n. 1, p. 131, doi. 10.1007/s00227-006-0337-x
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Toward Achievement of the UN Ocean Decade: Does “CANAL STUDY” in Central Tokyo Bay Area Enhance Ocean Literacy?
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- Marine Technology Society Journal, 2022, v. 56, n. 3, p. 91, doi. 10.4031/mtsj.56.3.10
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Observations of two marine members of the genus C ymbellonitzschia ( Bacillariophyta) from Tokyo Bay, Japan, with the description of the new species C ymbellonitzschia banzuensis.
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- Phycological Research, 2016, v. 64, n. 1, p. 26, doi. 10.1111/pre.12110
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- Article
Growth, maturation and photosynthesis of the brackish water algaRhizocloniumsp. (Cladophoraceae, Chlorophyta) in relation to salinity.
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- Phycological Research, 2004, v. 52, n. 3, p. 204, doi. 10.1111/j.1440-183.2004.00341.x
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Hybrid methods combining atmospheric reanalysis data and a parametric typhoon model to hindcast storm surges in Tokyo Bay.
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- Scientific Reports, 2019, v. 9, n. 1, p. N.PAG, doi. 10.1038/s41598-019-48728-7
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Non-functional hermaphroditism in three species of Clupeiformes from Tokyo Bay, Japan.
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- Journal of Applied Ichthyology, 2013, v. 29, n. 4, p. 918, doi. 10.1111/jai.12117
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Isomer Specific Analysis of Polychlorinated Naphthalenes in Pine Trees.
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- Polish Journal of Environmental Studies, 2004, v. 13, n. 2, p. 139
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A new seismic survey technology using underwater speaker detected a low-velocity zone near the seafloor: an implication of methane gas accumulation in Tokyo Bay.
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- Earth, Planets & Space, 2019, v. 71, n. 1, p. 1, doi. 10.1186/s40623-019-1011-0
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MODELING OF MUD ACCUMULATION AND BED CHARACTERISTICS IN TOKYO BAY.
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- Coastal Engineering Journal, 2008, v. 50, n. 3, p. 277, doi. 10.1142/S0578563408001831
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PHYTOPLANKTON BLOOM MECHANISM IN AN AREA AFFECTED BY EUTROPHICATION:: TOKYO BAY IN SPRING 1999.
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- Coastal Engineering Journal, 2007, v. 49, n. 4, p. 461, doi. 10.1142/S0578563407001691
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- Article
Marine integrons containing novel integrase genes, attachment sites, attI, and associated gene cassettes in polluted sediments from Suez and Tokyo Bays.
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- ISME Journal: Multidisciplinary Journal of Microbial Ecology, 2011, v. 5, n. 7, p. 1162, doi. 10.1038/ismej.2010.208
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Seasonal and annual change in community structure of meso-sized copepods in Tokyo Bay, Japan.
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- Journal of Oceanography, 2013, v. 69, n. 5, p. 545, doi. 10.1007/s10872-013-0191-7
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Criteria for the occurrence of wind-driven coastal upwelling associated with 'Aoshio' on the southeast shore of Tokyo Bay.
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- Journal of Oceanography, 2012, v. 68, n. 4, p. 561, doi. 10.1007/s10872-012-0119-7
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Amplification of semidiurnal internal tide observed in the outer part of Tokyo Bay.
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- Journal of Oceanography, 2011, v. 67, n. 5, p. 613, doi. 10.1007/s10872-011-0061-0
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Effects of seawater acidification on hydrolytic enzyme activities.
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- Journal of Oceanography, 2010, v. 66, n. 2, p. 233, doi. 10.1007/s10872-010-0021-0
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- Article