dc.contributor.author | Krupska, Aldona | |
dc.date.accessioned | 2021-04-12T14:30:40Z | |
dc.date.available | 2021-04-12T14:30:40Z | |
dc.date.issued | 2013 | |
dc.identifier.issn | 1689-4286 | |
dc.identifier.uri | http://hdl.handle.net/11089/35109 | |
dc.description.abstract | This paper aims to show the influence of 20th century quantum
mechanics and the theory of relativity on the philosophical problems of
Darwin’s theory of biological evolution. Evolution as a non-relativistic
being can be attributed only to the process as a whole. Quantum
mechanics and the theory of relativity are not compatible with the
evolution process of separate elements of the system. It seems to be in
contradiction to Darwin’s theory of evolution as a slow and gradual
process of separate elements in the biological system. According to
many scientists and philosophers of science the Darwin’s theory does
not explain the whole Universe evolution as well as does not explain the
origin of life. Explanation of events and processes, reliance on concepts
not laws, refutation of typology by Darwin theory of evolution are not
established by standards of scientific reasoning. Many scientific facts
from modern physics indicate that Darwin’s theory of evolution is in
crisis. | pl_PL |
dc.language.iso | en | pl_PL |
dc.publisher | Instytut Filozofii Uniwersytetu Łódzkiego | pl_PL |
dc.relation.ispartofseries | Internetowy Magazyn Filozoficzny HYBRIS;23 | |
dc.title | Darwin’s Theory of Biological Evolution Seen From the Point of View of Modern Physics | pl_PL |
dc.type | Article | pl_PL |
dc.page.number | 56-77 | pl_PL |
dc.contributor.authorAffiliation | Instytut Fizyki Molekularnej PAN | pl_PL |
dc.references | Ahuja, Aman, 2001, I have heard that humans have a wavelength: Is this true?, Ask an Expert, PhysLink.com. | pl_PL |
dc.references | Badii, R. and Politi, A., 1997, Complexity: Hierarchical Structures and Scaling in Physics. Cambridge: Cambridge University Press. | pl_PL |
dc.references | Behe, M. J., 1996, Darwin’s Black Box: The Biochemical Challenge to Evolution, New York: The Free Press, 70-71. | pl_PL |
dc.references | Bridgham, J. T., Carroll, S. M., Thornton, J. W., 2006, Evolution of Hormone-ReceptorComplexity by Molecular Exploitation, [w:] Nature 312, 97-101, (2006). | pl_PL |
dc.references | Chaitin, G. J., 1987, Algorithmic Information Theory. Cambridge: Cambridge University Press. | pl_PL |
dc.references | Cosner, L., Sarfati J., 2009, Galápagos Conservation Trust, Galápagos giant tortoise, Tortoises of the Galápagos gct.org/tortoise.html, accessed 17 August 2009. | pl_PL |
dc.references | Cuvier, G., 1812, Sur un rapprochement à établir entre les differentes classes des animaux, Paris | pl_PL |
dc.references | Darwin, Ch., 1859, On the Origin of Species by Means of Natural Selection, or the Preservation of Favoured Races in the Struggle for Life, London, 162. | pl_PL |
dc.references | Darwin, C., 1839, Voyages of the Adventure and Beagle, Henry Colburn, London, darwin-online.org.uk. | pl_PL |
dc.references | Denton, M., 1985, Evolution: A Theory in Crisis, Adler & Adler. | pl_PL |
dc.references | Descartes, R., 1644, Principia Philosophia, Amsterdam: Fischer G Verlag, 146. | pl_PL |
dc.references | Heisenberg, W., 1959, Physik und Philosphie, Ullstein Bucher Berlin | pl_PL |
dc.references | Hartle, J. and Hawking, S., 1983, Wave function of the Universe, [w:] Physical Review D 28 (12) 2960-2975 (1983). | pl_PL |
dc.references | Hawking, S., and Penrose, R., 1996, The Nature of Space and Time. Princeton: Princeton University Press | pl_PL |
dc.references | Kuhn, T., 1962, The Structure of Scientific Revolutions, 1st. ed. Chicago: University of Chicago Press. | pl_PL |
dc.references | Lenski, R. E., Ofria, Ch., Pennock, R. T. and Adami, Ch., 2003, The evolutionary origin of complex features, [w:] Nature 423, 139- 143, (2003). | pl_PL |
dc.references | Lloyd, S., 2009, [w:] Nature Physics 5,164-166, (2009). | pl_PL |
dc.references | Meyer-Abich, A., 1963, Geistesgeschichtliche Grundlagen der Biologie, Stuttgart, Fischer. | pl_PL |
dc.references | Newton, I., 1686, Philosophiae Naturalis Principia Mathematica, London | pl_PL |
dc.references | Pigliucci, M., 2006, Making Sense of Evolution: Toward a Coherent Picture of Evolutionary, Chicago: Theory Chicago Press. | pl_PL |
dc.references | Rohde, R. A. and Muller, R. A., 2005, Cycles in fossils diversity, [w:] Nature 434, (2005). | pl_PL |
dc.references | Schrödinger, E., 1926, An Undulatory Theory of the Mechanics of Atoms and Molecules, [w:] Physical Review 28 (6): 1049-1070 (1926). | pl_PL |
dc.references | Schrödinger, E., 1944,What Is Life? The Physical Aspect of the Living Cell, Dublin | pl_PL |
dc.references | Smith, Maynard, J. & Szathmáry, E., 1995, The Major Transitions in Evolution, Oxford University Press | pl_PL |
dc.references | Szathmary and Smith, 1995, [w:] Nature 374, 227-232, (1995). | pl_PL |
dc.references | Unlocking the Mystery of Life, 2002, Documentary by Illustra Media | pl_PL |
dc.references | Wheeler, J., 1989, The Cosmic, New York-Boston, 225. | pl_PL |
dc.references | Verhulst, P. F., 1845, Recherches mathématiques sur la loi d’accroissement de la population [Mathematical Researches into the Law of Population Growth Increase], [w:] Nouveaux Mémoires de l’Académie Royale des Sciences et Belles-Lettres de Bruxelles 18 1–42 (1845) http://gdz.sub.unigoettingen.de/dms/load/img/?PPN=PPN12 9323640_0018&DMDID=dmdlog7. | pl_PL |
dc.references | Żurek, W. H., 2009, [w:] Nature Physics 5, 181-188, (1980). | pl_PL |
dc.references | Żurek, W. H., 2003, Decoherence, einselection, and the quantum origins of the classical, [w:] Rev. Mod. Phys. 75:715-775. | pl_PL |
dc.relation.volume | 4 | pl_PL |
dc.discipline | filozofia | pl_PL |