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RECORD NUMBER: 17 OF 78

OLS Field Name OLS Field Data
Main Title Comparing the Accuracy of Equation Formats for Modeling Microbial Population Decay Rates.
Author Hurst, C. J. ; Wild, D. K. ; Clark, R. M. ;
CORP Author Environmental Protection Agency, Cincinnati, OH. Risk Reduction Engineering Lab. ;National Inst. for Occupational Safety and Health, Rockville, MD.
Publisher 1992
Year Published 1992
Report Number EPA/600/A-92/260;
Stock Number PB93-131548
Additional Subjects Microbiology ; Microbial colony count ; Soil microbiology ; Aquatic microbiology ; Air ; Plants(Botany) ; Ecology ; Mathematical models ; Reprints ;
Holdings
Library Call Number Additional Info Location Last
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Checkout
Status
NTIS  PB93-131548 Most EPA libraries have a fiche copy filed under the call number shown. Check with individual libraries about paper copy. 06/08/1993
Collation 29p
Abstract Virus stability in natural environments is important to understanding the health significance of human or animal viral contaminants in air, soil, and water. It is also a consideration in studies on the role of natural virus populations in plant and microbial ecology. There are no standard formats for modeling environmental virus stability. The present study was intended to help fill this void by comparing the relative accuracy of four regression formats for empirically modeling viral stability using a database on picornavirus survival in surface freshwaters. Greatest accuracy was achieved by multiplicative error regression using survival ratio as dependent variable.
Supplementary Notes Pub. in Book Modeling the Metabolic and Physiologic Activities of Microorganisms, Chapter 6, p149-175. Prepared in cooperation with National Inst. for Occupational Safety and Health, Rockville, MD.
NTIS Title Notes Book chapter.
Title Annotations Reprint: Comparing the Accuracy of Equation Formats for Modeling Microbial Population Decay Rates.
Category Codes 57K; 57H
NTIS Prices PC A03/MF A01
Primary Description 600/14
Document Type NT
Cataloging Source NTIS/MT
Control Number 303626805
Origin NTIS
Type CAT