<p>This special issue on “Recent Advances in Fluid Mechanics and Nanoelectronics” presents 14 peer-reviewed research articles, carefully selected from 41 submissions. The selected papers highlight significant progress in fluid mechanics, covering theoretical modelling, computational techniques, experimental insights, and emerging applications. These articles were presented at the 2nd International Conference on Recent Advances in Fluid Mechanics and Nanoelectronics (ICRAFMN-2024), showcasing the interdisciplinary nature and technological relevance of the work. The studies demonstrate innovations with wide-ranging implications in energy systems, aerospace engineering, microelectronics, and biomedical devices. This issue provides a timely overview of the current research landscape and identifies promising directions for future exploration. By bridging fluid dynamics with nanoelectronics technologies, the issue encourages integration of concepts and fosters collaboration among researchers from diverse domains. Overall, this special issue aims to deepen scientific understanding and stimulate innovation in areas where micro- and nanoscale processes play a transformative role.</p>

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Recent advances in fluid mechanics and nanoelectronics

  • Dharmendra Tripathi,
  • Kalpna Sharma,
  • Rajashekhar Choudhari

摘要

This special issue on “Recent Advances in Fluid Mechanics and Nanoelectronics” presents 14 peer-reviewed research articles, carefully selected from 41 submissions. The selected papers highlight significant progress in fluid mechanics, covering theoretical modelling, computational techniques, experimental insights, and emerging applications. These articles were presented at the 2nd International Conference on Recent Advances in Fluid Mechanics and Nanoelectronics (ICRAFMN-2024), showcasing the interdisciplinary nature and technological relevance of the work. The studies demonstrate innovations with wide-ranging implications in energy systems, aerospace engineering, microelectronics, and biomedical devices. This issue provides a timely overview of the current research landscape and identifies promising directions for future exploration. By bridging fluid dynamics with nanoelectronics technologies, the issue encourages integration of concepts and fosters collaboration among researchers from diverse domains. Overall, this special issue aims to deepen scientific understanding and stimulate innovation in areas where micro- and nanoscale processes play a transformative role.