Applied Nuclear Physics focuses on the practical applications of nuclear processes and radiation. It extends fundamental nuclear physics principles to real-world problems. Applications include nuclear energy production, medical diagnostics, radiation therapy, and materials analysis. Applied nuclear physics also supports environmental monitoring and security screening. This field studies nuclear reactions, decay processes, and radiation interactions in applied contexts. Safety, efficiency, and regulatory considerations are central concerns. Applied nuclear physics bridges basic research and technological implementation. It contributes to energy sustainability, healthcare innovation, and national security. By translating nuclear science into practical solutions, applied nuclear physics plays a vital role in modern society.
Title : Photoaligned azodye nanolayers: New trends for liquid crystal devices
Vladimir Chigrinov, Hong Kong University of Science and Technology, Hong Kong
Title : Using physics to eliminate implant infection in over 25000 patients to date
Thomas J Webster, Brown University, United States
Title : How the Rad Lab helped avert nuclear war
Thomas F Ramos, Lawrence Livermore National Laboratory, United States
Title : Anisotropic stiffness matrix of bed joint mesh-reinforced masonry: A numerical homogenization approach
Omar Mohammed Daud Shakarneh, Novosibirsk State University of Architecture and Civil Engineering, Russian Federation
Title : Global photochemical model CHARM-DE of the Earth’s atmosphere for altitudes 0-130 km
Alexei Krivolutsky, Central Aerological Observatory (CAO), Russian Federation
Title : Enhanced ferromagnetism in carbon dots polyaniline nanocomposite
Paulo Cesar De Morais, University of Brasilia, Brazil