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Fermentation / Microbiology / Bacteria / Zymomonas mobilis / Cellulosic ethanol / Zymomonas / Xylose / Lignocellulosic biomass / Furfural / Chemistry / Biology / Ethanol


An upper limit for macromolecular crowding effects
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City

Helsinki / Germantown / San Diego / /

Company

Renewable Energy / Norden Logic Oy / Illumina Inc. / Proc Natl Acad Sci U S A / Google / National Renewable Energy Laboratory / Qiagen / J Biosciences / BioMed Central Ltd. / Microsoft / Creative Commons / /

Country

United States / Finland / /

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Facility

Su’s laboratory / University of Utah / /

IndustryTerm

media composition / degradation products / mL media / serial dilution protocol / by-products / microplates containing media / random chemical mutagenesis / media containing xylose / gene product / culture using serial dilution protocol / liquid transportation fuels / online submission / measured using serial dilution protocol / /

MarketIndex

case 55 / /

Organization

BioEnergy Technologies Office / Department of Energy / University of Utah / US Federal Reserve / /

Person

Jeff Linger / Mary Ann Franden / Holly Smith / Shihui Yang / Nancy Dowe / Milton Roy / Ali Mohagheghi / Arch Microbiol / /

Position

Farmer / Heidi MP / /

Product

FastQC / sodium acetate / xylose / Sequencing / acetic acid / Bioscreen C / /

ProgrammingLanguage

C / /

ProvinceOrState

Zymomonas / Utah / Colorado / /

Technology

Genomics / Biotechnology / culture using serial dilution protocol / serial dilution protocol / single nucleotide polymorphism / directed evolution / Biofuels / gene expression / Sequencing technologies / spectroscopy / SNP / /

URL

www.biomedcentral.com/submit / http /

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