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M

M. Dunn

Researcher at Brookhaven National Laboratory

Publications -  16
Citations -  539

M. Dunn is an academic researcher from Brookhaven National Laboratory. The author has contributed to research in topics: Waste Isolation Pilot Plant & Cloud computing. The author has an hindex of 8, co-authored 16 publications receiving 506 citations. Previous affiliations of M. Dunn include Stony Brook University.

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A study of the currents of the outer shelf and upper slope from a decade of shipboard ADCP observations in the middle atlantic bight

TL;DR: In this paper, the Eulerian mean velocity structure shows an along-isobath shelfbreak jet with maximum speeds of O(0.15 m s−1) offshore of which is a ∼30 km wide relatively quiescent region.
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Role of bacteria as biocolloids in the transport of actinides from a deep underground radioactive waste repository

TL;DR: The interaction of dissolved actinides Th, U, Np, Pu, and Am with halophilic bacteria isolated from the Waste Isolation Pilot Plant repository under anaerobic conditions was investigated to evaluate their potential transport as biocolloids from the waste site.
Journal ArticleDOI

The potential of subterranean microbes in facilitating actinide migration at the Grimsel Test Site and Waste Isolation Pilot Plant

TL;DR: In this paper, the total microbial populations in two groundwater samples were characterized: one from the Culebra dolomite member of the Rustler Formation at the Waste Isolation Pilot Plant (WIPP), NM, and the other from the granitic formation at the Grimsel Test Site (GTS), Switzerland.
ReportDOI

The Microbase Value-Added Product: A Baseline Retrieval of Cloud Microphysical Properties

TL;DR: The Atmospheric Radiation Measurement (ARM) Climate Research Facility baseline cloud microphysical properties (MICROBASE) value-added product (VAP) as discussed by the authors uses a combination of millimeter-wavelength cloud radar, microwave radiometer, and radiosonde observations to estimate the vertical profiles of the primary microphysical parameters of clouds including the liquid/ice water content and liquid /ice cloud particle effective radius.