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    Items where Author is "Mewis, Ryan"

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    Number of items: 7.

    Article

    Dobzhenetskiy, Anton, Gater, Callum A, Wilcock, Alexander TM, Langley, Stuart, Brignall, Rachel M, Williamson, David C and Mewis, Ryan ORCID logoORCID: https://orcid.org/0000-0002-3756-6505 (2019) Utilisation of the static Evans method to measure magnetic susceptibilities of transition metal acetylacetonate complexes as part of an undergraduate inorganic laboratory class. Chemistry: Bulgarian Journal of Science Education, 28 (3). pp. 339-350. ISSN 0861-9255

    Olaru, AM, Robertson, TBR, Lewis, JS, Antony, A, Iali, W, Mewis, Ryan and Duckett, SB (2018) Extending the Scope of 19F Hyperpolarization through Signal Amplification by Reversible Exchange in MRI and NMR Spectroscopy. ChemistryOpen, 7 (1). pp. 97-105. ISSN 2191-1363

    Norcott, P, Burns, MJ, Rayner, PJ, Mewis, Ryan and Duckett, SB (2017) Using 2H Labelling to Improve the NMR Detectability of Pyridine and its Derivatives by SABRE. Magnetic Resonance in Chemistry, 56 (7). pp. 663-671. ISSN 0749-1581

    Book Section

    Mewis, Ryan ORCID logoORCID: https://orcid.org/0000-0002-3756-6505 (2022) Hyperpolarisation techniques. In: Nuclear Magnetic Resonance: Volume 47. SPR - Nuclear Magnetic Resonance, 47 . Royal Society of Chemistry, pp. 151-182. ISBN 9781839163913 (print); 9781839164965 (ebook); 9781839164972 (ebook)

    Robertson, Thomas B R and Mewis, Ryan (2018) Perspective on the Hyperpolarisation Technique Signal Amplification by Reversible Exchange (SABRE) in NMR Spectroscopy and MR Imaging. In: Annual Reports on NMR Spectroscopy. Elsevier, pp. 145-212. ISBN 9780128149133

    Report

    Caprio, Vittorio, Sutcliffe, Oliver B and Mewis, Ryan ORCID logoORCID: https://orcid.org/0000-0002-3756-6505 (2018) Analysis of the reduction product of 3-nitrobenzaldehyde using Pulsar. Technical Report. Oxford Instruments.

    Ashworth, David, Clayton, Lisa and Mewis, Ryan ORCID logoORCID: https://orcid.org/0000-0002-3756-6505 (2015) Using Pulsar to measure spin-lattice relaxation data to determine the longevity of polarised spin-states produced by a parahydrogen based hyperpolarisation technique. Technical Report. Oxford Instruments.

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