Abstract <p>Based on quantization of the continuum of the electromagnetic radiation field in increments of ¼π, natural boundaries between regions were previously obtained, among which clear divisions for “primary colors” in the visible region of the spectrum according to Helmholtz are distinguished. It is shown that dimensional relations in the quantization of these colors can be realized by involving anthropic data and identifying signs in the quadrants of natural octaves of the color wheel. It is suggested that the seasonal activation of photosynthesis is determined with the participation of IR-B photons, followed by IR-A photons, and only subsequently by the visible region of the spectrum, which may serve to confirm the hypothesis about the existence of “nonelements” (chemical elements with negative mass) at temperatures close to normal.</p>

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Dimensional Analysis of Color and Ontology (Supplement to the Discussion on the Existence of Chemical Elements with Negative Mass)

  • N. V. Serov

摘要

Abstract

Based on quantization of the continuum of the electromagnetic radiation field in increments of ¼π, natural boundaries between regions were previously obtained, among which clear divisions for “primary colors” in the visible region of the spectrum according to Helmholtz are distinguished. It is shown that dimensional relations in the quantization of these colors can be realized by involving anthropic data and identifying signs in the quadrants of natural octaves of the color wheel. It is suggested that the seasonal activation of photosynthesis is determined with the participation of IR-B photons, followed by IR-A photons, and only subsequently by the visible region of the spectrum, which may serve to confirm the hypothesis about the existence of “nonelements” (chemical elements with negative mass) at temperatures close to normal.