- Research Article
2
- 10.1016/j.clsr.2026.106263
Incorporating AI incident reporting into telecommunications law and policy: Insights from India
- Apr 01, 2026
- Computer Law & Security Review
- Avinash Agarwal + 1 more +1
Publications from 2021 to 2026
Showing 10 of 501 papers
Incorporating AI incident reporting into telecommunications law and policy: Insights from India
Tunable wavelength generation from PM Yb-doped fiber laser modelocked by NAbLM
Synthesis, characterizations and EMI shielding behaviour of nanostructured molybdenum-chalcogenides (MoSeTe)
Reinforcement learning-based real-time optimization of friction stir welding parameters for copper–aluminium dissimilar interfaces
Barium Sulfate as Green Oxidizer in Binary Pyrotechnic Delay System: A Comparative Study
ABSTRACT Pyrotechnic delays are used to provide a time interval between two successive explosive events. The burning performance of delay compositions is evaluated by inverse burn rate (IBR s/cm). At present, several pyrotechnic delay compositions consist of oxidizer, which are toxic. This paper reports a less toxic, green delay composition with a higher IBR value, which provides more delay time. The stoichiometry's effect on density, heat of combustion, particle size and crystallite size of composition, and the effect of all these parameters on IBR and delay time have been studied. Results revealed that (B/BaCrO 4 /NC) composition supported combustion and smooth burning propagation in the range of 3%–10% of boron, with an IBR ranging from 0.22–1.59 s/cm. The (B/BaSO 4 /NC) composition supported combustion with smooth burning propagation in the range of 10%–40% of boron with an inverse burn rate ranging from 0.84–2.04 s/cm. The use of green oxidizer barium sulfate as a replacement for barium chromate in (B/BaCrO 4 /NC) binary delay system significantly increases the IBR and produces more delay time in the same column length hardware.
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Machine learning-assisted evaluation of flexural strength of FRP-confined concrete beams: experimental and ANSYS APDL study
ML Based Solution for DSMAC System in Aerial Navigation
Area Coverage Analysis Using Stochastic Modeling
Leveraging Blockchain Technology in Business Management