The Theory of Extended View was developed to address questions across disciplines at a causal level for a comprehensive understanding of health and sustainability. One basis for this was the assumption of a single non-predetermined evolutionary process. The 2022 Nobel Prizes in Physics to Clauser, Aspect, and Zeilinger and in Chemistry 2023 to Bawendi, Brus, and Ekimov seem to confirm this approach. The 2022 prizewinning papers do not confirm Bohr’s world view, but they do confirm nonlocal quantum effects, which Einstein had rejected as spooky. They support Schrödinger’s prediction that entanglement, and thus nonlocality, is THE essential feature of quantum processes. They showed how entanglement of photons can be artificially created by joint activation and then used. The Extended View model assumes that such binding consensuses are expressions of a general principle (Einstein). They are to be expected at all evolutionary levels in a suitably modified manner. The artificial production of crystals from single atoms in nano size can be understood as evidence for the atomic level. Bawendi’s technique makes evident the dynamic transition from the “micro-world” to the “macro-world”, which depends on the temperature but not on the observer: predictions for the colors of the smallest crystals have to be made with the help of quantum theory, larger particles with the help of classical physics and chemistry. Thus, Bohr’s world view is no longer tenable, but Heisenberg’s world view from 1955 on, according to which quantum objects have potentia in the sense of Aristotle. Thus, one comes closer to Einstein's aim of a unification of sciences. There is also hope that in the future it will be easier to avoid wrong decisions, which result from the fact that it is not yet methodologically possible to consider interactions of influencing variables on a causal level, which are handled with different paradigms.

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Two Nobel Prizes Support the Extended View

  • Walter W. Kofler,
  • Oleg S. Glazachev

摘要

The Theory of Extended View was developed to address questions across disciplines at a causal level for a comprehensive understanding of health and sustainability. One basis for this was the assumption of a single non-predetermined evolutionary process. The 2022 Nobel Prizes in Physics to Clauser, Aspect, and Zeilinger and in Chemistry 2023 to Bawendi, Brus, and Ekimov seem to confirm this approach. The 2022 prizewinning papers do not confirm Bohr’s world view, but they do confirm nonlocal quantum effects, which Einstein had rejected as spooky. They support Schrödinger’s prediction that entanglement, and thus nonlocality, is THE essential feature of quantum processes. They showed how entanglement of photons can be artificially created by joint activation and then used. The Extended View model assumes that such binding consensuses are expressions of a general principle (Einstein). They are to be expected at all evolutionary levels in a suitably modified manner. The artificial production of crystals from single atoms in nano size can be understood as evidence for the atomic level. Bawendi’s technique makes evident the dynamic transition from the “micro-world” to the “macro-world”, which depends on the temperature but not on the observer: predictions for the colors of the smallest crystals have to be made with the help of quantum theory, larger particles with the help of classical physics and chemistry. Thus, Bohr’s world view is no longer tenable, but Heisenberg’s world view from 1955 on, according to which quantum objects have potentia in the sense of Aristotle. Thus, one comes closer to Einstein's aim of a unification of sciences. There is also hope that in the future it will be easier to avoid wrong decisions, which result from the fact that it is not yet methodologically possible to consider interactions of influencing variables on a causal level, which are handled with different paradigms.