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Regression analysis / Econometrics / Hydrology / Environmental soil science / Water pollution / Linear regression / Impervious surface / Drainage basin / Regression / Statistics / Water / Earth


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Document Date: 2014-03-05 07:29:27


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City

Kingston / Orchard / Winchester / /

Company

Ó 2013 Elsevier B.V. / USGS / /

Country

United States / /

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Event

Product Recall / Product Issues / /

Facility

Stacey Arch / University of Massachusetts / /

IndustryTerm

power law regression equation / riverine systems / storage systems / aquatic systems / regression algorithm / /

NaturalFeature

Jones Rivers / Chicopee River / Allagash River / Aberjona River / Evaluating Stream / North Nashua River / Swift River / /

Organization

MA Department of Environmental Protection / Department of Civil and Environmental Engineering / National Science Foundation / Holdsworth Natural Resources Center / United States Army / U.S. Environmental Protection Agency / United States Department of Environmental Conservation / University of Massachusetts / Amherst / Nature Conservancy / /

Person

Scott D. Jackson / Andras Bardossy / Min Mean Max / Richard Vogel / Sara Levin / Fitzhugh / James Falcone / Kevin McGarigal / Bradley W. Compton / Casey Brown / Foley / /

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Position

Editor-in-Chief / Editor / Major / Marshall / Model development We / Corresponding author / /

Product

variable / human consumption / /

ProvinceOrState

Vermont / stream / Maine / Rhode Island / Massachusetts / Connecticut / New Hampshire / /

Region

northeastern United States / New England / northern Maine / /

TVStation

CBET / /

Technology

Environmental Engineering / regression algorithm / /

URL

www.elsevier.com/locate/jhydrol / http /

SocialTag