Dimensions
Dimensions are treated as physical levels with characteristic geometry, energy behavior, interactions, and possible forms of matter or existence.
DPT ABOUT THE RESEARCH PROGRAM
class="about-description"> Dimensional Physics Theory is an independent theoretical research framework investigating whether space, time, energy, matter, and fundamental interactions can be understood through a structured dimensional hierarchy.
This website was created by Javier Aguilar to provide a wider access to DPT.
DEFINITION
DPT proposes that physical reality can be studied as a hierarchy of dimensional systems, each characterized by its own relationship between space, time, energy, interaction, and physical structure.
Dimensions are treated as physical levels with characteristic geometry, energy behavior, interactions, and possible forms of matter or existence.
Space and time are studied as dimensional properties whose behavior changes depending on the structure of the dimension being considered.
Energy is treated as a central quantity linking dimensional structure with matter, interaction, motion, and physical change.
DPT investigates whether different fundamental interactions may correspond to specific dimensional regimes or emerge from dimensional structure.
ORIGIN
The project began as an attempt to ask a broader structural question: what if the familiar components of physics are not independent categories, but different expressions of an underlying dimensional organization?
Can space, time, energy, matter, and fundamental interactions be organized within one dimensional framework?
Begin with the idea that reality may be organized through multiple dimensional layers.
Define how space, time, energy, forces, and beings may correspond to each dimension.
Translate the conceptual framework into equations and quantitative relationships.
Identify which predictions can be simulated, compared with known systems, or eventually tested experimentally.
RESEARCH PHILOSOPHY
DPT is being developed progressively, beginning with conceptual organization, followed by mathematical formulation, computational modeling, and eventually empirical evaluation.
Develop a coherent conceptual model before forcing the theory into mathematical form.
Express assumptions and dimensional relationships quantitatively wherever possible.
Use computational models to investigate the behavior implied by the equations.
Meaningful physical claims ultimately need measurable predictions and empirical tests.
FRAMEWORK ARCHITECTURE
The theory is organized around recurring categories that can be examined across every dimensional level.
Space defines the geometric structure available within a dimension and determines the directions and forms through which physical systems can be organized.
CREATOR & RESEARCHER
DPT is an independently developed research project combining interests in physics, mathematics, computing, simulation, and engineering.
DPT should be evaluated by the same standards applied to any physical theory: internal mathematical consistency, agreement with established observations where appropriate, new quantitative predictions, falsifiability, and reproducible experimental evidence.
Clearly state assumptions and equations.
Compare predictions with established physics.
Define conditions under which a model fails.
Change the theory when evidence demands it.