Physical Theory provides the conceptual and mathematical framework used to explain and predict physical phenomena. It seeks to describe the behavior of matter, energy, space, and time through fundamental principles and equations. Physical theories range from classical mechanics and electromagnetism to quantum mechanics and relativity. These theories are developed through logical reasoning, mathematical formulation, and consistency with experimental evidence. A strong physical theory not only explains observed phenomena but also makes testable predictions. Physical theory guides experimental research, helps interpret results, and identifies new directions for investigation. It also plays a critical role in unifying different areas of physics by revealing underlying connections between physical laws. Through continuous refinement and validation, physical theory drives the advancement of scientific knowledge and deepens our understanding of the universe.
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