International Journal of Empirical Research Methods

ISSN NO : 2995-6110

The International Journal of Empirical Research Methods is dedicated to promoting and advancing empirical research methodologies across various disciplines. This journal aims to provide a platform for researchers, scholars, educators, and practitioners to share insights, methodologies, and findings that contribute to the improvement of empirical research practices and the enhancement of evidence-based decision-making.

  • 247
    Views
  • 0
    CrossRef citations to date

Nature of Space And Dimension of Observable Universe and Beyond

1 Isanpur, Ahmedabad, Gujarat,India

Volume 2

Issue 2

Page: [147 - 169]

Published Online: July 22, 2024

  • Abstract

    My innovative research of space, space definition, types of space, and space transformation methods resulted in space transformation law and space-matter transformation law. These space transformation methods and laws govern the nature of the entire space. Finally I have covered the entire existence of space-time (Spacetime, 2022) and beyond by “Dimension of Observable Universe and beyond”. As we know, the universe is defined as all spacetime and its contents (Universe, 2022). However, questions are still open for higher dimensions (String theory vs Loop quantum gravity: Wild hunt for Quantum Gravity:, 2020), the singularity (Gravitational singularity, 2022), gravity collapse at the horizon of the black hole, unified gravity, theory of everything (Theory of everything, 2022), dark matter (Dark matter, 2022) (What is dark matter made of? Leading theories explained: Axion, Wimp, Machos, 2020), dark energy (Dark matter, 2022) (What is dark matter made of? Leading theories explained: Axion, Wimp, Machos, 2020), existence beyond the observable universe and for the space itself. These open questions have driven this scientific research of “Nature of Space and Dimension of Observable Universe and Beyond”. My research findings indicate that the space itself is an entity with physical properties. The space transforms/converts to matter and v/s. The higher dimension is extended beyond the singularity (Gravitational singularity, 2022), beyond the horizon of black holes and beyond the observable universe (Universe, 2022). Several types of research have been done, which include Minkowski Space (Minkowski space, 2022), General relativity (Quantum Gravity: How quantum mechanics ruins Einstein’s general relativity, 2020) (General Relativity Explained simply & visually, 2020), Loop Quantum Gravity (String theory vs Loop quantum gravity: Wild hunt for Quantum Gravity:, 2020), String theory (Standard Model, 2022) (String theory vs Loop quantum gravity: Wild hunt for Quantum Gravity:, 2020) (String theory, 2022) (Theory of everything, 2022), Higgs field (Higgs boson, 2022), Aether medium (Aether (classical element), 2022), the questions are still open for higher dimension, unified gravity, dark matter (Dark matter, 2022) (What is dark matter made of? Leading theories explained: Axion, Wimp, Machos, 2020), dark energy (Dark energy, 2022) (What is Dark Energy made of? Quintessence? cosmological constant?, 2020), theory of everything (Theory of everything, 2022) and space beyond the universe. By researching the existence of matter, I found that the existence of space was just accepted as the void, empty, and space-time background framework. There are well research attempts made to look into space-time as the entity and look for higher dimensions by Loop Quantum Gravity (Loop Quantum Gravity Reveals What Came Before the Big Bang, 2018) and String theory (String theory, 2022). It became very important to define space and to research the relationship between matter and space. It would not be possible without defining higher dimensions. My research reflects the “Dimension of the Observable Universe and beyond” accommodates all existence of the observable universe and beyond the observable universe. The definition of space, type of space, space transformation and space-matter transformation perfectly describe the existence of the entire space & universe and its nature at a very fundamental level. Also, the definitions of the GODEYE and GODEYE Model explain the phenomena of universe expansion-contraction and phenomena of gravity at a very fundamental level for the “dimension of the observable universe and beyond”. It is the most accurate foundation to answer those open questions. It is the novelty in astrophysics and the foundation of entire existence.

    Keywords: Higher Dimension Space Space transformation GODEYE Universe expansion-contraction Gravity

  • Figures

    Figure Image

  • References

      Aether (classical element). (2022, September 9). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Aether_(classical_element)&oldid=1109302417

      Classical mechanics. (2022, August 30). Wikipedia. Retrieved October 1, 2022, from https://en.wikipedia.org/w/index.php?title=Classical_mechanics&oldid=1107569634

      Dark energy. (2022, September 24). Wikipedia. Retrieved September 27, 2022, from https://en.wikipedia.org/w/index.php?title=Dark_energy&oldid=1112144068

      Dark matter. (2022, September 22). Wikipedia. Retrieved September 27, 2022, from https://en.wikipedia.org/w/index.php?title=Dark_matter&oldid=1111746451

      Four-dimensional space. (2022, July 25). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Four-dimensional_space&action=history

      Fundamental interaction. (2022, October 3). Wikipedia. Retrieved October 5, 2022, from https://en.wikipedia.org/w/index.php?title=Fundamental_interaction&oldid=1113901126

      General relativity. (2022, September 1). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=General_relativity&action=history

      General relativity explained simply and visually. (2020, June 20). YouTube. Retrieved September 28, 2022, from https://www.youtube.com/watch?v=tzQC3uYL67U

      Gravitational singularity. (2022, August 28). Wikipedia. Retrieved October 1, 2022, from https://en.wikipedia.org/w/index.php?title=Gravitational_singularity&oldid=11072338

      Higgs boson. (2022, September 1). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Higgs_boson&oldid=1107958999

      International Systems of Units. (2022, September 5). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=International_System_of_Units&oldid=1108667575

      Loop Quantum Gravity Reveals What Came Before the Big Bang. (2018, December 27). YouTube. Retrieved September 19, 2022, from https://www.youtube.com/watch?v=dpmx8D5CXRA

      Mass. (2022, September 2). Wikipedia. Retrieved October 5, 2022, from https://en.wikipedia.org/w/index.php?title=Mass&oldid=1108111942

      Minkowski space. (2022, August 11). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Minkowski_space&oldid=1103788203

      Quantum gravity: How quantum mechanics ruins Einstein’s general relativity. (2020, October 17). YouTube. Retrieved September 19, 2022, from https://www.youtube.com/watch?v=S3Wtat5QNUA

      Quantum mechanics. (2022, September 29). Wikipedia. Retrieved October 1, 2022, from https://en.wikipedia.org/w/index.php?title=Quantum_mechanics&oldid=1113030086

      Relativity 110b: Cosmology - FLRW Metric Derivation (3 possible geometries). (2022, July 2). YouTube. Retrieved September 30, 2022, from https://www.youtube.com/watch?v=iERBF2_TnXo

      Spacetime. (2022, September 1). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Spacetime&oldid=1107878726

      Standard model. (2022, September 3). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Standard_Model&oldid=1108241997

      String theory. (2022, July 16). Wikipedia. Retrieved September 29, 2022, from https://en.wikipedia.org/w/index.php?title=String_theory&oldid=1098548243

      String theory simplified: A bunch of BS? Or answers to why do we exist? (2019, February 1). YouTube. Retrieved September 29, 2022, from https://www.youtube.com/watch?v=37JKlkow7v0

      String theory vs Loop quantum gravity: Wild hunt for quantum gravity. (2020, October 31). YouTube. Retrieved September 19, 2022, from https://www.youtube.com/watch?v=3jKPJa-f3cQ

      The Higgs boson and Higgs field explained with simple analogy. (2018, September 15). YouTube. Retrieved September 19, 2022, from https://www.youtube.com/watch?v=zAazvVIGK-c

      Theory of everything. (2022, September 18). Wikipedia. Retrieved September 27, 2022, from https://en.wikipedia.org/w/index.php?title=Theory_of_everything&oldid=1110883215

      Three-dimensional space. (2022, August 23). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Three-dimensional_space&action=history

      Universe. (2022, September 3). Wikipedia. Retrieved September 19, 2022, from https://en.wikipedia.org/w/index.php?title=Universe&oldid=1108241156

      What is dark energy made of? Quintessence? Cosmological constant? (2020, March 14). YouTube. Retrieved September 19, 2022, from https://www.youtube.com/watch?v=YQq0VdJApzU

      What is dark matter made of? Leading theories explained: Axion, Wimp, Machos. (2020, February 29). YouTube. Retrieved September 19, 2022, from https://www.youtube.com/watch?v=915Vky7r_gk

      What is reality? String theory & multiverse visualized. (2019, November 23). YouTube. Retrieved September 29, 2022, from https://www.youtube.com/watch?v=DpFlqcMwh2U

      What would we see if we fell inside a black hole? What’s beyond the event horizon? (2019, August 10). YouTube. Retrieved September 19, 2022, from https://www.youtube.com/watch?v=iUr8Obv_DeA
  • Article Metrics

    Views

    247
  • Copyright and Permissions

    At Guinness Press, authors retain the copyright for all articles published in our journals. These articles are licensed under the open-access Creative Commons CC BY 4.0 license, granting free access for reading and download. Additionally, the original published version must be appropriately cited when reusing or quoting the article. These terms ensure widespread accessibility while ensuring proper attribution to the authors.

    All content published by Guinness Press is safeguarded by international copyright and intellectual property regulations. We kindly request that you honor these protections when utilizing our materials.

    For further information, please contact us at info@guinnesspress.org.