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INTERNATIONAL JOURNAL OF MASS SPECTROMETRY

ISSN:

1387-3806

eISSN:

1873-2798

Disciplines
(Field of Science):

  • automation, electronics, electrical engineering and space technologies (Engineering and Technology)
  • biomedical engineering (Engineering and Technology)
  • materials engineering (Engineering and Technology)
  • environmental engineering, mining and energy (Engineering and Technology)
  • medical biology (Medical and Health Sciences )
  • pharmacology and pharmacy (Medical and Health Sciences )
  • health sciences (Medical and Health Sciences )
  • food and nutrition technology (Agricultural sciences)
  • astronomy (Natural sciences)
  • chemical sciences (Natural sciences)
  • physical sciences (Natural sciences)

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Ministry points - current year
Year Points List
Year 2024 70 Ministry scored journals list 2024
Ministry points - previous years
Year Points List
2024 70 Ministry scored journals list 2024
2023 70 Ministry Scored Journals List
2022 70 Ministry Scored Journals List 2019-2022
2021 70 Ministry Scored Journals List 2019-2022
2020 70 Ministry Scored Journals List 2019-2022
2019 70 Ministry Scored Journals List 2019-2022
2018 30 A
2017 30 A
2016 25 A
2015 25 A
2014 25 A
2013 30 A
2012 30 A
2011 30 A
2010 27 A

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Hybrid

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Points CiteScore - current year
Year Points
Year 2023 3.6
Points CiteScore - previous years
Year Points
2023 3.6
2022 3.6
2021 3.8
2020 3.7
2019 3
2018 3.5
2017 3.3
2016 3.6
2015 3.7
2014 4.2
2013 4.1
2012 3.8
2011 3.4

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total: 12

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Catalog Journals

Year 2020
Year 2016
  • Dissociative multi-photon ionization of isolated uracil and uracil-adenine complexes
    Publication
    • M. Ryszka
    • R. Pandey
    • C. Rizk
    • J. Tabet
    • B. Barc
    • M. Dampc
    • N. Mason
    • S. Eden

    - INTERNATIONAL JOURNAL OF MASS SPECTROMETRY - Year 2016

    Recent multi-photon ionization (MPI) experiments on uracil revealed a fragment ion at m/z 84 that was proposed as a potential marker for ring opening in the electronically excited neutral molecule. The present MPI measurements on deuterated uracil identify the fragment as C3H4N2O+ (uracil+ less CO), a plausible dissociative ionization product from the theoretically predicted open-ring isomer. Equivalent measurements on thymine...

    Full text to download in external service

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Year 2000

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