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Jeremy C Havens

Datos Biográficos

ID6378774
NOMBREJeremy C Havens
NOMBRESJeremy C
APELLIDOHavens
FIRMAHAVENS J C
AFILIACIONESUnited States Geological Survey
ORCID0000-0002-8685-2823
VERIFICADOSí
TOTAL DE OBRAS3
TOTAL DE CITAS0
TOTAL COMO AUTOR3
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2013
AÑO MÁS RECIENTE DE PUBLICACIÓN2023
ÍNDICE H0
  • Holocene paleohydrology from alpine lake sediment, Emerald Lake, Wasatch Plateau of central Utah, USA

    Open Access•Lesleigh Anderson, Gary Skipp et al.•ARTICLE•Quaternary Research•2023

    Holocene sediments at Emerald Lake in central Utah (3090 m asl) document the paleohydroclimatic history of the western Upper Colorado River headwater region. Multi-proxy analyses of sediment composition, mineralogy, and stable isotopes of carbonate (δ 18 O and δ 13 C) show changes in effective moisture for the past ca. 10,000 years at millennial to decadal timescales. Emerald Lake originated as a shallow, closed-basin cirque pond during the Early…

  • Boreal blazes

    Open Access•Natalie Kehrwald, Jeramy R Jasmann et al.•ARTICLE•Environmental Research Letters•2020

    The past decade includes some of the most extensive boreal forest fires in the historical record. Warming temperatures, changing precipitation patterns, the desiccation of thick organic soil layers, and increased ignition from lightning all contribute to a combustive combination. Smoke aerosols travel thousands of kilometers, before blanketing the surfaces on which they fall, such as the Juneau Icefield. However, many aerosols found in smoke plum…

  • Constraints on the age of the Great Sand Dunes, Colorado, from subsurface stratigraphy and OSL dates

    Open Access•Richard F Madole, Shannon A Mahan et al.•ARTICLE•Quaternary Research•2013

    The age of the Great Sand Dunes has been debated for nearly 150 yr. Seven ages ranging from Miocene to late Holocene have been proposed for them. This paper presents new information–chiefly subsurface stratigraphic data, OSL dates, and geomorphic evidence–that indicates that the Great Sand Dunes began to form in the latter part of the middle Pleistocene. The dunes overlie a thick wedge of piedmont-slope deposits, which in turn overlies sediment o…

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  • Constraints on the age of the Great Sand Dunes, Colorado, from subsurface stratigraphy and OSL dates

    Open Access•Richard F Madole, Shannon A Mahan et al.•ARTICLE•Quaternary Research•2013

    The age of the Great Sand Dunes has been debated for nearly 150 yr. Seven ages ranging from Miocene to late Holocene have been proposed for them. This paper presents new information–chiefly subsurface stratigraphic data, OSL dates, and geomorphic evidence–that indicates that the Great Sand Dunes began to form in the latter part of the middle Pleistocene. The dunes overlie a thick wedge of piedmont-slope deposits, which in turn overlies sediment o…

  • Boreal blazes

    Open Access•Natalie Kehrwald, Jeramy R Jasmann et al.•ARTICLE•Environmental Research Letters•2020

    The past decade includes some of the most extensive boreal forest fires in the historical record. Warming temperatures, changing precipitation patterns, the desiccation of thick organic soil layers, and increased ignition from lightning all contribute to a combustive combination. Smoke aerosols travel thousands of kilometers, before blanketing the surfaces on which they fall, such as the Juneau Icefield. However, many aerosols found in smoke plum…

  • Holocene paleohydrology from alpine lake sediment, Emerald Lake, Wasatch Plateau of central Utah, USA

    Open Access•Lesleigh Anderson, Gary Skipp et al.•ARTICLE•Quaternary Research•2023

    Holocene sediments at Emerald Lake in central Utah (3090 m asl) document the paleohydroclimatic history of the western Upper Colorado River headwater region. Multi-proxy analyses of sediment composition, mineralogy, and stable isotopes of carbonate (δ 18 O and δ 13 C) show changes in effective moisture for the past ca. 10,000 years at millennial to decadal timescales. Emerald Lake originated as a shallow, closed-basin cirque pond during the Early…

Fire effects on ecosystems (2 obras) · Geology (2 obras) · Holocene (2 obras) · Oceanography (2 obras) · Physical geography (2 obras) · Aeolian processes and effects (1 obras) · Aerosol (1 obras) · Atmospheric sciences (1 obras) · Biomass burning (1 obras) · Boreal (1 obras)

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