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  1. A great successes of FRESNEL’s theory was the clarification of the linear propa-gation of light, which, along with the Emission theory, was extraordinarily simple to explain. We note, however, that when two theories, seemingly on entirely different basis, with equal facility can clarify an experimental result, then one should ask if a difference

  2. Interpretation of quantum mechanics by the double solution theory. Louis de BROGLIE. EDITOR'S NOTE. In this issue of the Annales, we are glad to present an English translation of one of Louis de Broglie's latest articles, as a kind of gift to all physicists abroad who are not well acquainted with the double solution theory, or do not read French.

  3. a mystery which deepened as the strange quantum concept introduced by Planck in 1900 in his research on black-body radiation continued to encroach on the whole domain of physics.

  4. It also explores how the alternative – the ring current model of an electron (or of matter-particles in general) – relates to Louis de Broglies λ = h/p relation and rephrases the theory in terms of the wavefunction as well as the wave equation(s) for an electron in free space.

  5. Despite the unsurpassed predictive success of quantum theory, there is, since its inception almost 80 years ago, a persistent problem with its conventional interpretation, namely the measurement problem. The problem arises as follows. Quantum theory was developed in order to explain the behavior of ‘microscopic’ systems. With each microscopic

  6. This chapter gives a brief introduction to quantum mechanics. Quantum mechanics can be thought of roughly as the study of physics on very small length scales, although there are also certain macroscopic systems it directly applies to.

  7. 17 Σεπ 1973 · photoelectric effect and quantum theory. De Broglie (1924) in a seminal paper explored the reconciliation of lightquanta (used by Einstein to explain the photoelectric effect)

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