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J Jacob Parnell

Biographic Data

ID2029985
NAMEJ Jacob Parnell
GIVEN NAMESJ Jacob
FAMILY NAMEParnell
SIGNATUREPARNELL J J
VERIFIEDNo
TOTAL WORKS5
TOTAL CITATIONS249
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2000
LATEST PUBLICATION YEAR2004
H-INDEX5
  • The story in the floors: Chemical signatures of ancient and modern Maya activities at Aguateca, Guatemala

    Open Access•Richard E Terry, Francisco García Fernández et al.•ARTICLE•Journal of Archaeological Science•2004•Cited by: 56•References: 27

  • Soil Chemical Analysis Applied as an Interpretive Tool for Ancient Human Activities in Piedras Negras, Guatemala

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Journal of Archaeological Science•2002•Cited by: 81•References: 12

  • Soil Chemical Analysis of Ancient Activities in Cerén, El Salvador: A Case Study of a Rapidly Abandoned Site

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Latin American Antiquity•2002•Cited by: 23•References: 35

    Activities performed over long periods of time tend to leave soil chemical residues as evidence of those activities. Some of the questions studied in this paper deal with the interpretive capabilities provided by chemical patterns. Soil samples from Cerén, El Salvador, a well-preserved site, were analyzed for extractable phosphorus and heavy metals. We compared in situ artifacts collected from the site with chemical signatures that indicate activ…

  • Using in‐field phosphate testing to rapidly identify middens at Piedras Negras, Guatemala

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Geoarchaeology•2001•Cited by: 24•References: 20

    Recent studies have promoted using soil phosphate analysis to detect ancient Maya sites by delimiting areas of occupation based on decomposed organic matter. Refuse associated with human activity increases organic matter around areas of ancient human habitation. Theoretically, the highest concentration of organic matter—detectable by phosphate analysis—should be directly associated with areas of refuse disposal. Thus, the objective of this study …

  • Chemical Analyses of Ancient Anthrosols in Residential Areas at Piedras Negras, Guatemala

    Open Access•E Christian Wells, Richard E Terry et al.•ARTICLE•Journal of Archaeological Science•2000•Cited by: 65•References: 12

  • Soil Chemical Analysis Applied as an Interpretive Tool for Ancient Human Activities in Piedras Negras, Guatemala

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Journal of Archaeological Science•2002•Cited by: 81•References: 12

  • Chemical Analyses of Ancient Anthrosols in Residential Areas at Piedras Negras, Guatemala

    Open Access•E Christian Wells, Richard E Terry et al.•ARTICLE•Journal of Archaeological Science•2000•Cited by: 65•References: 12

  • The story in the floors: Chemical signatures of ancient and modern Maya activities at Aguateca, Guatemala

    Open Access•Richard E Terry, Francisco García Fernández et al.•ARTICLE•Journal of Archaeological Science•2004•Cited by: 56•References: 27

  • Using in‐field phosphate testing to rapidly identify middens at Piedras Negras, Guatemala

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Geoarchaeology•2001•Cited by: 24•References: 20

    Recent studies have promoted using soil phosphate analysis to detect ancient Maya sites by delimiting areas of occupation based on decomposed organic matter. Refuse associated with human activity increases organic matter around areas of ancient human habitation. Theoretically, the highest concentration of organic matter—detectable by phosphate analysis—should be directly associated with areas of refuse disposal. Thus, the objective of this study …

  • Soil Chemical Analysis of Ancient Activities in Cerén, El Salvador: A Case Study of a Rapidly Abandoned Site

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Latin American Antiquity•2002•Cited by: 23•References: 35

    Activities performed over long periods of time tend to leave soil chemical residues as evidence of those activities. Some of the questions studied in this paper deal with the interpretive capabilities provided by chemical patterns. Soil samples from Cerén, El Salvador, a well-preserved site, were analyzed for extractable phosphorus and heavy metals. We compared in situ artifacts collected from the site with chemical signatures that indicate activ…

  • Chemical Analyses of Ancient Anthrosols in Residential Areas at Piedras Negras, Guatemala

    Open Access•E Christian Wells, Richard E Terry et al.•ARTICLE•Journal of Archaeological Science•2000•Cited by: 65•References: 12

  • Using in‐field phosphate testing to rapidly identify middens at Piedras Negras, Guatemala

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Geoarchaeology•2001•Cited by: 24•References: 20

    Recent studies have promoted using soil phosphate analysis to detect ancient Maya sites by delimiting areas of occupation based on decomposed organic matter. Refuse associated with human activity increases organic matter around areas of ancient human habitation. Theoretically, the highest concentration of organic matter—detectable by phosphate analysis—should be directly associated with areas of refuse disposal. Thus, the objective of this study …

  • Soil Chemical Analysis Applied as an Interpretive Tool for Ancient Human Activities in Piedras Negras, Guatemala

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Journal of Archaeological Science•2002•Cited by: 81•References: 12

  • Soil Chemical Analysis of Ancient Activities in Cerén, El Salvador: A Case Study of a Rapidly Abandoned Site

    Open Access•Jade Parnell, J Jacob Parnell et al.•ARTICLE•Latin American Antiquity•2002•Cited by: 23•References: 35

    Activities performed over long periods of time tend to leave soil chemical residues as evidence of those activities. Some of the questions studied in this paper deal with the interpretive capabilities provided by chemical patterns. Soil samples from Cerén, El Salvador, a well-preserved site, were analyzed for extractable phosphorus and heavy metals. We compared in situ artifacts collected from the site with chemical signatures that indicate activ…

  • The story in the floors: Chemical signatures of ancient and modern Maya activities at Aguateca, Guatemala

    Open Access•Richard E Terry, Francisco García Fernández et al.•ARTICLE•Journal of Archaeological Science•2004•Cited by: 56•References: 27

Archaeology and ancient environmental studies (5 works) · Amazonian Archaeology and Ethnohistory (4 works) · Archaeology (4 works) · Geography (4 works) · Environmental Science (3 works) · Artifact (error (2 works) · Biology (2 works) · Chemistry (2 works) · Cultural Heritage Materials Analysis (2 works) · Isotope Analysis in Ecology (2 works)

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