Cramer, Benjamin S. et al.  (1997): Stratigraphic and climatic implications of a continuous, thick Paleocene/Eocene boundary, Bass River, NJ (ODP Leg 174AX) 
  
    Leg/Site/Hole: 
    Related Expeditions: 
    ODP 143 
   
  
    Identifier: 
    ID: 
    2010-033439
    
    Type: 
    georefid
    
     
  
    Creator: 
    Name: 
    Cramer, Benjamin S. 
    
    Affiliation: 
    Rutgers University, Department of Geological Sciences, Piscataway, NJ, United States 
    
    Role: 
    author 
    
    Name: 
    Aubry, Marie-Pierre 
    
    Affiliation: 
    Universite Montpellier II, France 
    
    Role: 
    author 
    
    Name: 
    Olsson, Richard K. 
    
    Affiliation: 
    University of Maine, United States 
    
    Role: 
    author 
    
    Name: 
    Miller, Kenneth G. 
    
    Affiliation: 
     
    
    Role: 
    author 
    
    Name: 
    Wright, James D. 
    
    Affiliation: 
     
    
    Role: 
    author 
    
     
  
    Identification: 
    Title: 
    Stratigraphic and climatic implications of a continuous, thick Paleocene/Eocene boundary, Bass River, NJ (ODP Leg 174AX) 
    
    Year: 
    1997 
    
    Source: 
    In: Anonymous, AGU 1997 fall meeting 
    
    Publisher: 
    American Geophysical Union, Washington, DC, United States 
    
    Volume: 
    78 
    
    Issue: 
    46, Suppl. 
    
    Pages: 
    363-364 
    
    Abstract: 
     
    
    Language: 
    English 
    
    Genre: 
     
    
    Rights: 
     
    
    URL: 
     
    
   
  Coverage: Geographic coordinates: North:40.1200 West:-75.0500 East:
        -74.2200 South:39.3642 
Keywords: Stratigraphy; algae; Atlantic Coastal Plain; Bass River; benthic taxa; biostratigraphy; biozones; boreholes; Burlington County New Jersey; Cenozoic; clay minerals; coastal environment; East Pacific; Foraminifera; Invertebrata; isotopes; kaolinite; Leg 143; Leg 174AX; microfossils; Mid-Pacific Mountains; nannofossils; New Jersey; North Pacific; Northeast Pacific; O-18/O-16; Ocean Drilling Program; ODP Site 865; organic compounds; oxygen; Pacific Ocean; Paleocene-Eocene Thermal Maximum; paleoclimatology; Paleogene; planktonic taxa; Plantae; Protista; sedimentation rates; sheet silicates; silicates; stable isotopes; stratigraphic boundary; subtidal environment; Tertiary; total organic carbon; United States; 
 
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