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Nuclear physics / Spin isomers of hydrogen / J-coupling / Chemical shift / Magnetometer / Magnetic resonance imaging / SERF / Hyperpolarization / Hydrogen / Nuclear magnetic resonance / Physics / Chemistry


Parahydrogen-enhanced zero-field nuclear magnetic resonance
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Document Date: 2011-06-20 12:06:48


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Company

NMR / Cambridge Isotope Labs / Macmillan Publishers Limited. / McDermott / Sigma-Aldrich / Lawrence Berkeley National Laboratory / /

Country

United States / /

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Facility

National Institute of Standards and Technology / University of California at Berkeley / /

IndustryTerm

aromatic systems / chemical shifts3 / proton chemical shifts / Magnetic resonance imaging / large chemical-shift differences / buffer gas / site-specific chemical shifts / chemical shifts / chemical-reaction / ONLINE PUBLICATION / spin systems / analytical tool / chemical-shift differences / hydrogen gas / chemical fingerprinting / imaging / chemical analysis / quantum interference devices / chemical bonds / numerical simulation accounting / /

Organization

National Institute of Standards and Technology / University of California / US Department of Energy / National Science Foundation / Division of Materials Sciences and Engineering / Oxford Univ. / Department of Physics / Time and Frequency Division / office of Basic Energy Sciences / Department of Chemistry / /

Position

Author / /

ProvinceOrState

S.K. / /

PublishedMedium

NATURE PHYSICS / /

Technology

laser / lasers / Magnetic resonance imaging / spectroscopy / simulation / MRI / /

URL

www.nature.com/naturephysics / http /

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