Skip to main content

Posts

Showing posts with the label Cosmology

Undoing a Century of Cosmological Errors | Chapter 10 | Innovations in Science and Technology Vol. 7

  The goal of this study is to investigate and report on the scientific and mathematical flaws that have resulted in a widely held incorrect understanding of the universe. Because of a basic cosmological mistake that dates back to 1915, present accepted cosmology has constructed an extensive system of beliefs that lack foundation. The legendary big bang did not occur, galaxies are not receding from one another, we are not on a collision path with Andromeda, and dark matter and dark energy are also fictions. General relativity has become the widely accepted explanation for gravity as a result of two mathematical errors dating back to 1915. Unfortunately, this geometric gravity theory is hopelessly faulty. There is no four-dimensional spacetime, it does not curve, and it does not interact with gravity. Light is not bent by gravity, therefore gravitational waves do not exist. The following hypotheses are proven to be wrong by this study: the big bang hypothesis, Hubble's law, expansio...

Dark Matter and Dark Energy as a Derivate from Cosmic Photon Radiation | Chapter 05 | Theory and Applications of Physical Science Vol. 3

For many decades now, intensive efforts have been undertaken by physicists and cosmologists around the world to investigate dark matter (DM), without noticeable success to date. This situation leads me to believe that one of the assumptions underlying the current doctrine in physics may well be erroneous or incomplete – since a breakthrough in this field of physics and cosmology would otherwise surely have already taken place by now. For the past years, the CERN Nuclear Research Centre has set itself the task of using the LHC (upgraded to 13 TeV) to investigate the still completely mysterious phenomenon of dark matter. The researchers at CERN favour the assumption – shared by the majority of physicists and cosmologists, that DM consists of massive non-baryonic particles (so-called WIMPs, Weakly Interacting Massive Particles) hitherto completely unknown to us, which produce a non-baryonic, static gravitational field distributed throughout the entire cosmos. I cast doubt on the ...

Second-order Gauge-invariant Cosmological Perturbation Theory: Current Status Updated in 2019 | Chapter 01 | Theory and Applications of Physical Science Vol. 3

The current status of the recent developments of the second-order gauge-invariant cosmological perturbation theory is reviewed. To show the essence of this perturbation theory, we concentrate only on the universe filled with a single scalar field. Through this review, we point out the problems which should be clarified for the further theoretical sophistication of this perturbation theory. This review is an extension of the review paper [K. Nakamura, “Second-Order Gauge-Invariant Cosmological Perturbation Theory: Current Status”, Advances in Astronomy, 2010 (2010), 576273.]. We also expect that this theoretical sophistication will be also useful to discuss the future developments in cosmology as a precise science. Author(s) Details Dr. Kouji Nakamura Gravitational-Wave Science Project, National Astronomical Observatory of Japan, Osawa, Mitaka, Tokyo 181-8588, Japan. View Volume: http://bp.bookpi.org/index.php/bpi/catalog/book/134