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Philosophy of biology / Conservation genetics / Genetic drift / Effective population size / Inbreeding depression / Extinction vortex / Ecology / Population bottleneck / Microevolution / Population genetics / Biology / Genetics


Understanding and Estimating Effective Population Size for Practical Application in Marine Species Management
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Document Date: 2013-11-19 15:33:39


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Santiago / Seattle / Pacific Grove / Hatchery / Allendorf / Missoula / Halifax / Paris / Ithaca / /

Company

Cambridge University Press / NeC / Monte Carlo / /

Country

France / Canada / United Kingdom / New Zealand / /

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Event

Environmental Issue / /

Facility

Cornell University / Hopkins Marine Station / Spieth Hall / Museum National d’Histoire Naturelle / Stanford University / Northwest Fisheries Science Center / Rocky Mountain Research Station / Dalhousie University / University of California / /

IndustryTerm

computer processing speed / management applications / marine systems / /

NaturalFeature

North Sea / /

OperatingSystem

Dos / /

Organization

Congress / Cambridge University / National Science Foundation / Society for Conservation Biology DOI / Stanford University / Department of Biology / National Oceanic and Atmospheric Administration / Department of Natural Resources / Northwest Fisheries Science Center / National Academy of Sciences / Dalhousie University / U.S.A. ‡USDAForest Service / University of California / Riverside / Cornell University / /

Person

MARTHA BURFORD / MICHAEL K. SCHWARTZ / DANIEL E. RUZZANTE / ROBIN S. WAPLES / KRISTEN RUEGG / LEONARD NUNNEY / MATTHEW P. HARE / /

Position

Hunter / and three anonymous reviewers / moderado presentan el mayor / /

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Montana / Nova Scotia / Newfoundland / North Carolina / California / New York / Washington / /

PublishedMedium

Proceedings of the National Academy of Sciences / Biology Letters / Nature Reviews Genetics / /

RadioStation

Nova / /

SportsLeague

Stanford University / /

Technology

genotyping / simulation / /

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