Research ArticleOpen AccessGoogle Scholar indexed
Encoding Energy-Density as Geometry
Cybernetic Micro Systems, Inc., San Gregorio, CA, USA
- 1 Cybernetic Micro Systems, Inc., San Gregorio, CA, USA
Journal of Modern Physics·Volume 12 (2021)·Pages 1190–1209·Published 2 July 2021·DOI10.4236/jmp.2021.129073
Copy link · social · email
Abstract
Physicists possess an intuitive awareness of Euclidian space and time and Galilean transformation, and are then challenged with Minkowski space-time and Einstein’s curved space-time. Relativistic experiments support the “time-dilation” interpretation and others support “curved space-time” interpretation. In this, and related work, we investigate the key issues in terms of the intuitive space-time frame. In particular, we provide alternative approaches to explain “time dilation” and to explain the energy density for gravity systems. We approach the latter problem from an information perspective.
KeywordsCurved Space-TimeGravitational EnergyStress-Energy TensorEncoding Information in GeometryTime DilationEquivalence PrincipleMinkowski RelationSchwarzschild MetricLinearized General RelativityCosmology
- Chen, C.-N., et al. (2015) International Journal of Modern Physics D, 24, Article ID: 1530026.
- Nozick, R. (2001) Invariance: The Structure of the Objective World. Belknap-Harvard, Cambridge, MA.
- Hestenes, D. (1986) New Foundations for Classical Mechanics. 2nd Edition, Kluwer Academic Publishers, Dordrecht. https://doi.org/10.1007/978-94-009-4802-0
- Klingman, E. (2020) Journal of Modern Physics, 11, 1950-1968. https://doi.org/10.4236/jmp.2020.1112123
- Lucas and Hodgson (1990) Space-Time and Electromagnetics. Oxford University Press, Oxford.
- Rindler, W. (1991) Introduction to Special Relativity. 2nd Edition, Oxford Science Pub., Oxford.
- Cannoni, M. (2016) Lorentz Invariant Relative Velocity and Relativistic Binary Collisions.
- Klingman, E. (2018) Everything’s Relative, Or Is It.
- Fromholz, P., Will, C. and Poisson, E. (2013) The Schwarzschild Metric: It’s the Coordinates, Stupid.
- Weinberg, S. (1972) Gravitation and Cosmology. John Wiley & Sons, New York.
- Poisson, E. and Will, C. (2014) Gravity: Newtonian, Post-Newtonian, Relativistic. Cambridge University Press, Cambridge.
- Misner, C.W., Thorne, K.S. and Wheeler, J.A. (1973) Gravitation. W.H. Freeman and Company, New York.
- Feynman, R. (1995) Feynman Lectures on Gravitation. Westview Press, Boulder.
- Vishwakarma, R. (2013) Gravity of R μ v = 0: A New Paradigm in GR.
- Klingman, E. (2019) Prespacetime Journal, 10, 671-680.
- Heaviside, O. (1893) The Electrician, 31, 281-282.
- Einstein, A. (1952) Relativity: The Special and General Theory. Crown Publishers Inc., New York.
- Ohanian, H. and Ruffini, R. (2013) Gravitation and Spacetime. 3rd Edition, Cambridge University Press, Cambridge. https://doi.org/10.1017/CBO9781139003391
- Verlinde, E. (2010) On the Origin of Gravity and the Laws of Newton.
- Klingman, E. (2020) Journal of Modern Physics, 12, 65-81. https://doi.org/10.4236/jmp.2021.122007
- Yilmaz, H. (1992) Il Nuovo Cimento, 107B, 941-960. https://doi.org/10.1007/BF02899296