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南方科技大学讲席教授王鹏获美国糖化学界最高奖Claude S.Hudson奖(图)
南方科技大学 讲席教授 王鹏 美国糖化学界 最高奖 Claude S.Hudson奖
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2020/9/10
近日,南方科技大学医学院讲席教授王鹏以其在糖科学研究领域做出的杰出贡献,获2021年美国糖化学界最高奖Claude S.Hudson奖。据悉,王鹏教授是获此奖的第一位在中国大陆出生的学者。王鹏长期从事糖科学的研究。他带领团队在糖化学、糖生物学、糖蛋白质组学等方面的基础科学研究上取得了多项令人瞩目的成果,拥有8项发明专利,参与7部学术专著的编写,并在国际学术刊物上发表论文448篇,H-指数 57 (...
Dispersal of the Hudson River Plume in the New York Bight:Synthesis of Observational and Numerical Studies During LaTTE
Hudson River Plume New York Bight Observational and Numerical LaTTE
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2015/7/22
Observations and modeling during the Lagrangian Transport and Transformation Experiment (LaTTE) characterized the variability of the Hudson River discharge and identified several freshwater transport ...
Hudson-70: The First Circumnavigation of the Americas
First Circumnavigation Americas
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2015/7/6
This year marks the fortieth anniversary of the departure of one of the last of the great globe-spanning multidisciplinary oceanographic expeditions, a tradition that included the epic voyages of Chal...
Professor Bruce Hudson,Department of Chemistry at Syracuse University(图)
Professor Bruce Hudson Department of Chemistry at Syracuse University
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2014/11/28
Terrestrial support of zebra mussels and the Hudson River food web: A multi-isotope, Bayesian analysis
Terrestrial support of zebra mussels Hudson River food web A multi-isotope Bayesian analysis
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2014/4/2
The Hudson River is a strongly heterotrophic system in which the invasive zebra mussel (Dreissena polymorpha) comprises >90% of total metazoan biomass. Using a Bayesian mixing model, with isotope rati...
Terrestrial support of zebra mussels and the Hudson River food web: A multi-isotope, Bayesian analysis
Terrestrial support of zebra mussels the Hudson River food web A multi-isotope Bayesian analysis
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2014/4/4
The Hudson River is a strongly heterotrophic system in which the invasive zebra mussel (Dreissena polymorpha) comprises >90% of total metazoan biomass. Using a Bayesian mixing model, with isotope rati...
Response to ‘‘Comparative estimate of P fluxes in lakes’’ by J. M. Sereda and J. J. Hudson
Comparative estimate of P fluxes in lakes J. M. Sereda J. J. Hudson
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2014/4/16
Sereda and Hudson (2010) are commenting on a carcassbound phosphorus (P) flux estimate reported in an article by Chidami and Amyot (2008). This article mainly presents in situ experimental evidence on...
Riverine export and the effects of circulation on dissolved organic carbon in the Hudson Bay system, Canada
Riverine export the effects of circulation dissolved organic carbon in the Hudson Bay system Canada
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2014/4/16
The distribution of dissolved organic carbon (DOC) in Hudson Bay (HB), Foxe Basin (FB), and Hudson Strait(HS) was examined during 01–14 August 2003. The HB system displayed relatively high DOC concent...
Early Bashkirian Rugosa (Anthozoa) from the Donets Basin,Ukraine.Part 1.Introductory considerations and the genus Rotiphyllum Hudson,1942
Rugosa (Anthozoa) Rotiphyllum Systematics Early Bashkirian Donets Basin Ukraine
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2009/10/20
Considerations and the genus Rotiphyllum Hudson, 1942. Acta Geologica Polonica, 59 (1), 1–37.Warszawa.The present paper is the first in a series devoted to the Early Bashkirian Rugosa (Anthozoa) from ...
Salt Dispersion in the Hudson Estuary
Salt Dispersion Hudson Estuary
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2009/2/9
The seaward transport of salt by river discharge through an estuary is balanced under steady conditions by landward dispersion effected by various physical mixing processes. Observations of current an...
A Three-Dimensional Simulation of the Hudson–Raritan Estuary. Part III:Salt Flux Analyses
Three-Dimensional Simulation Hudson–Raritan Estuary Salt Flux Analyses
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2009/1/16
Salt fluxes and volume transports in an estuary vary considerably over subtidal time scales of a few days to weeks in response to wind and neap–spring tidal forcings. Results from a numerical simulati...
A Three-Dimensional Simulation of the Hudson–Raritan Estuary. Part II:Comparison with Observation
Three-Dimensional Simulation Hudson–Raritan Estuary Comparison with Observation
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2009/1/16
Results from a time-dependent, three-dimensional numerical simulation of the Hudson–Raritan estuary are compared with observations. The comparison includes: 1) instantaneous salinity contours across a...
A Three-Dimensional Simulation of the Hudson–Raritan Estuary. Part I:Description of the Model and Model Simulations
Three-Dimensional Simulation Hudson–Raritan Estuary Model Simulations
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2009/1/16
A time-dependent, three-dimensional, finite difference simulation of the Hudson‐Raritan estuary is presented. The calculation covers July–September 1980. The model estuary is forced by time-depen...
A Numerical Simulation of Sea Ice Cover in Hudson Bay
Numerical Simulation Sea Ice Cover Hudson Bay
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2008/12/17
Hibler's dynamic-thermodynamic sea ice model with viscous-plastic rheology is used to simulate the seasonal cycle of sea ice motion, thickness, compactness, and growth rate in Hudson Bay under monthly...
A Three-Dimensional Numerical Simulation of Hudson Bay Summer Ocean Circulation:Topographic Gyres, Separations, and Coastal Jets
Three-Dimensional Numerical Simulation Hudson Bay Summer Ocean Circulation Topographic Gyres Coastal Jets
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2008/12/17
The summer ocean circulation in Hudson Bay is studied numerically using the Blumberg-Mellor model with a 27.5 km × 27.5 km horizontal grid and a realistic bottom topography. In the control run 1) mont...