This book covers key areas of Physical Science. The contributions by the authors include asymptotic freedom, Bekenstein bound, Bekenstein-Hawking entropy, binary logarithm, coupling hierarchy, effective gravitational constants, electro-gravitational hierarchy, electromagnetic coupling, elementary-particle rest energy, entropic unification, entropy-based renormalisation group, extremal principle, fine-structure constant, gauge coupling constants, gauge coupling unification, grand unification, gravitational entropy, gravitational information budget, gravitational microstates, Higgs vacuum expectation value, holographic entropy, holographic radius, information capacity, information extremisation principle, inverse gauge coupling, local entropy bound, mass-energy clustering, minimal neutral excitation, Planck energy, quantum vacuum, renormalisation-group flow, running coupling constants, scale invariance principle, sector-dependent gravity, sectoral holography, Standard Model, strong gravity, torsional vacuum, vacuum fluctuations, vacuum information capacity, vacuum microstate count, vacuum torsion, weak and strong interactions. This book contains various materials suitable for students, researchers and academicians in the field of Physical Science.

Editor(s)
Prof. Koji Nagata
Korea Advanced Institute of Science and Technology, Korea.

Short Biosketch

ISBN 978-81-69986-09-0 (Print)
ISBN 978-81-69986-08-3 (eBook)
DOI: https://doi.org/10.9734/bpi/psniad/v5

This book covers key areas of Physical Science. The contributions by the authors include asymptotic freedom, Bekenstein bound, Bekenstein-Hawking entropy, binary logarithm, coupling hierarchy, effective gravitational constants, electro-gravitational hierarchy, electromagnetic coupling, elementary-particle rest energy, entropic unification, entropy-based renormalisation group, extremal principle, fine-structure constant, gauge coupling constants, gauge coupling unification, grand unification, gravitational entropy, gravitational information budget, gravitational microstates, Higgs vacuum expectation value, holographic entropy, holographic radius, information capacity, information extremisation principle, inverse gauge coupling, local entropy bound, mass-energy clustering, minimal neutral excitation, Planck energy, quantum vacuum, renormalisation-group flow, running coupling constants, scale invariance principle, sector-dependent gravity, sectoral holography, Standard Model, strong gravity, torsional vacuum, vacuum fluctuations, vacuum information capacity, vacuum microstate count, vacuum torsion, weak and strong interactions. This book contains various materials suitable for students, researchers and academicians in the field of Physical Science.