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S. L. Vesely

Publications and source records attributed to S. L. Vesely.

5 recordsLinked to original sources

On Felix Klein's Geometric Model of Electromagnetism

In 1917 F. Klein proposed his work on projective geometry to A. Einstein for further developments of general relativity. Klein had a peculiar way to consider the relationship between mathematics and physics, based on his Erlanger Programm and geometrical modeling of physical phenomena. He was aiming at a physical foundation for non Euclidean geometry. However, the letters he wrote to Einstein had no sequel. We think that F. Klein's ideas still deserve some attention, as they can be useful for modeling Maxwell's equations with a radically different approach than resorting to field theories. One reason for looking for alternatives is that current field theories use geometry exclusively as a formal technique thereby inhibiting human intuition from grasping the physical world. This article collects cues that we deem relevant for a model of electromagnetic received signals. In the first two chapters we highlight a few features of classical physics, namely the trajectories of mass points, and the differences in treating rotations between statics and dynamics. In the third chapter, we finally review F. Klein's approach toward geometrical modeling of electromagnetism and special relativity.

physics.gen-ph

On Temperature Radiation

In this work we compare two blackbody interpretations, those of G. Kirchhoff and M. Planck. We separate the problem of interpreting the blackbody spectrum from that of determining the mechanical equivalent of radiation. Then we propose that, if we set aside characterization of the blackbody, electromagnetism suffices to analyze spectral distribution and leads to interpreting it as determined by the receiver band-pass.

physics.class-ph

Louis De Broglie's experiment

Louis de Broglie's celebrated hypothesis transfers a problem of representation of optics to the quantum theories. Let us suppose that the fact that originated the problem in optics is the following, "The images obtained by optical instruments are limited by diffraction. Is the diffraction phenomenon exclusively restricting of the information contained in the image or does it have some physical meaning by itself?" This considered as a problem of measurement of the radiative field does not pose the question of tracing well-defined processes in the sense of the light quantum concept. Despite this the application thereto of quantum formalism makes the essentially inferring statistical nature of measurement forecasting most important. We suggest avoiding the probabilistic conception of measurement by replacing the wave-corpuscle dualistic principle with the duality one. The latter is a basic feature of projective geometry. Referring to it we shall try to include the diffraction in a geometrical model of optics and interpret in that coherent schema the point -plane "wave" dual solution. We show what experimental substantiation the proposed duality has. Lastly, we again discuss the experimental basis of wave-corpuscle dualism.

physics.class-ph

Concerning Hertz' photoelectric effect

Experimental evidence of the photoelectric effect goes back to H. Hertz. It occurred during the famous confirmation experiments of the Maxwellian theory. It is commonly held however that it cannot be explained in the framework of that theory. We are calling attention to some aspects linked with the interpretation of that effect on which, in our opinion, it is worthwhile reflecting.

physics.gen-ph