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Craig D Taylor

Woods Hole Oceanographic Institution

$2,562,749
Attributed
$5,691,233
Total exposure
9
Grants
4
Lead (contact PI)

Attributed= this PI's even-split share of every grant they're on (the fair, additive number). Exposure = full size of all those grants.

Funding over time

peak $2.2M · FY200516
$2.5M$1.9M$1.3M$625K$0
'05
'06
'07
'08
'09
'10
'11
'12
'13
'14
'15
'16

Funding mix

By agency

NSF$5,691,233 · 9

By mechanism

$5,691,233 · 9

Top collaborators

Grant awards (9)

Collaborative Research: Environmental Drivers of Chemoautotrophic Carbon Production at Deep-Sea Hydrothermal Vents - Comparative Roles of Oxygen and Nitrate$773,264
· FY2016 · GEO
Collaborative Research: Genetic and Metabolic Signatures of Marine Microorganisms in Oxygen Depleted and Varying Geochemical Seascapes (MetaOmics in the Cariaco Basin)$683,052
· FY2013 · GEO
Dimensions: Collaborative Research: An Integrated Study of Energy Metabolism, Carbon Fixation, and Colonization Mechanisms in Chemosynthetic Microbial Communities at Deep-Sea Vents$1,014,241
· FY2011 · GEO
Collaborative Research: In Situ Measurement of Rates of Chemoautotrophic Carbon Production at Deep-Sea Hydrothermal Vents$682,967
· FY2011 · GEO · contact PI
SID/ISMS, An Autonomous Instrument for Combined In Situ Tracer Incubation Studies and Preservation of Microbial Samples for Genomic, Transcriptomic and Proteomic Analysis$522,324
· FY2011 · GEO
Collaborative Research: Integration of Deep Ocean Benthic Sampler Technology with Microbial Biogeochemistry of Methane Seeps and Isolation of Piezophilic Deep-Sea Sediment Microbes$748,982
· FY2010 · GEO · contact PI
Collaborative Research: Microbiology and Biogeochemistry of Autotrophic Microbes in the Subsurface at Hydrothermal Vents: Filamentous-Sulfur Producing Bacteria$817,914
· FY2005 · GEO
Physiology and Molecular Ecology of Microbial Filamentous Sulfur Formation$260,000
· FY2002 · BIO · contact PI
Characterization of Marine Carbon Monoxide Utilizing Bacteria$188,489
· FY2002 · GEO · contact PI