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Dr. John P. Hart

Curator Emeritus
john.hart@nysed.gov
518-474-3895

My research has focused primarily on the histories of maize, bean, and squash in New York and the greater Northeast and the interactions of human populations with these crops. Through collaborations with numerous colleagues both at the Museum and other institutions, this research resulted in new understandings of these histories and interactions. A primary focus has been on charred cooking residues adhering to the interior surfaces of pottery sherds in the collections of the Museum. These residues contain microfossil evidence (phytoliths, starch, lipids) of the plants cooked in the pots. In addition the residues can be directly radiocarbon dated through accelerator mass spectrometry. These methods and techniques have provided new evidence that is radically altering our understandings of the histories of agriculture in New York State. Theory building to develop understandings of these new histories is another focus. This research has broad implications for Native American history in New York and the greater Northeast.

Most recently I have been working with colleagues on Social Network Analyses (SNA) of northern Iroquoian sites dating from A.D. 1350 to 1650. SNA is a formal graphing method, which in archaeology is used to identify relationships between sites based on similarities of artifact assemblages. This research is helping to build new understandings of interactions between village populations and how these interactions changed through time during the last centuries before and then after European involvements.

Publications

2024

E. Landing, C. Brett, Z. Liu, T. Algeo, S. Arefifard, W. Wei, S. Lev 2024, Testing the salinity of Cambrian to Silurian epicratonic seas, Journal of the Geological Society 2024, 2023-217. 10.1144/jgs2023-217
E. Landing, A. Bartholomew 2024, Lester Park: Global "Type Locality" for Stromatolite Fossils, GSA Today 34, 8-12. 10.1130/GSAT10.1130/GSATG117GH.1
E. Landing, M. Johnson 2024, Stromatolites and Their “Kin” as Living Microbialites in Contemporary Settings Linked to a Long Fossil Record, Journal of Marine Science and Engineering 12, 2127. 10.3390/jmse12122127
E. Landing, F. Neuweiler, M. Mueller, B. Walter, A. Beranoaguirre, C. Sendino, L. Amati, S. Kershaw 2024, Spongy-looking microfabrics in the earliest named stromatolite represent deep burial alteration and incipient metamorphism, Scientific Reports 14, . 10.1038/s41598-024-83359-7

2023

G. Geyer, E. Landing 2023, Discussion: The Terreneuvian MacCodrum Brook section, Mira terrane, Cape Breton Island, Nova Scotia, Canada: age constraints from ash layers, organic-walled microfossils, and trace fossils, Canadian Journal of Earth Sciences , . 10.1139/cjes-2023-0031
G. Geyer, E. Landing, S. Westrop, B. Kroger 2023, Proposed Early Cambrian cephalopods are chimaeras, the oldest known cephalopods are 30 m.y. younger, Communications Biology 6, 32. 10.1038/s42003-022-04383-9
G. Geyer, E. Landing, S. Westrop, M. Schmitz 2023, U-Pb zircon dates from North American and British Avalonia bracket the Lower–Middle Cambrian boundary interval, with evaluation of the Miaolingian Series as a global unit, Geological Magazine , 1-27. 10.1017/S0016756823000729
G. Geyer, E. Landing, K. Mghazli, N. Lazreq, M. Boumehdi, N. Youbi 2023, Cambrian microfossils from the High Atlas, Morocco: Taxonomic, biostratigraphic, palaeobiogeographic, and depositional significance of the Brèche \ a Micmacca limestone beds, Journal of African Earth Sciences 197, 104751. 10.1016/j.jafrearsci.2022.104751

2022

G. Geyer, E. Landing, S. Meier, S. Höhn 2022, Oldest known West Gondwanan graptolite: Ovetograptus? sp. (lower Agdzian/lowest Wuliuan; basal Middle Cambrian) of the Franconian Forest, Germany, and review of pre-Furongian graptolithoids, PalZ , . 10.1007/s12542-022-00627-5
G. Geyer, E. Landing, R. Ripperdan 2022, Discussion of ‘Reply to “Uppermost Cambrian carbon chemostratigraphy: the HERB and undocumented TOCE events are not synonymous”’Abstract, Geological Magazine 159, 173-176. 10.1017/S001675682100090X