COMPUTATIONAL MATERIALS SCIENCE - Journal - Bridge of Knowledge

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COMPUTATIONAL MATERIALS SCIENCE

ISSN:

0927-0256

eISSN:

1879-0801

Disciplines
(Field of Science):

  • information and communication technology (Engineering and Technology)
  • biomedical engineering (Engineering and Technology)
  • civil engineering, geodesy and transport (Engineering and Technology)
  • materials engineering (Engineering and Technology)
  • mechanical engineering (Engineering and Technology)
  • medical biology (Medical and Health Sciences )
  • pharmacology and pharmacy (Medical and Health Sciences )
  • agriculture and horticulture (Agricultural sciences)
  • astronomy (Natural sciences)
  • biotechnology (Natural sciences)
  • chemical sciences (Natural sciences)
  • physical sciences (Natural sciences)

Ministry points: Help

Ministry points - current year
Year Points List
Year 2024 100 Ministry scored journals list 2024
Ministry points - previous years
Year Points List
2024 100 Ministry scored journals list 2024
2023 100 Ministry Scored Journals List
2022 100 Ministry Scored Journals List 2019-2022
2021 100 Ministry Scored Journals List 2019-2022
2020 100 Ministry Scored Journals List 2019-2022
2019 100 Ministry Scored Journals List 2019-2022
2018 30 A
2017 30 A
2016 30 A
2015 30 A
2014 30 A
2013 30 A
2012 30 A
2011 30 A
2010 32 A

Model:

Hybrid

Points CiteScore:

Points CiteScore - current year
Year Points
Year 2023 6.5
Points CiteScore - previous years
Year Points
2023 6.5
2022 6.2
2021 6.1
2020 5.5
2019 5
2018 4.5
2017 4.8
2016 4.3
2015 4.2
2014 3.6
2013 3.5
2012 3.3
2011 3.2

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total: 9

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Catalog Journals

Year 2023
Year 2022
Year 2021
  • Applying molecular dynamics simulation to take the fracture fingerprint of polycrystalline SiC nanosheets
    Publication
    • F. Molaei
    • M. Zarghami Dehaghani
    • A. Salmankhani
    • S. Fooladpanjeh
    • S. M. Sajadi
    • M. Esmaeili Safa
    • O. Abida
    • S. Habibzadeh
    • A. Hamed Mashhadzadeh
    • M. Saeb

    - COMPUTATIONAL MATERIALS SCIENCE - Year 2021

    Graphene-like nanosheets are the key elements of advanced materials and systems. The mechanical behavior of the structurally perfect 2D nanostructures is well documented, but that of polycrystalline ones is less understood. Herein, we applied molecular dynamics simulation (MDS) to take the fracture fingerprint of polycrystalline SiC nanosheets (PSiCNS), where monocrystalline SiC nanosheets (MSiCNS) was the reference nanosheet....

    Full text to download in external service

Year 2019
Year 2016
Year 2008
Year 2007

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