Abstract

Physical properties of non-material objects are investigated. Physical definition of physical non-material world is given. By physical methods following conclusions were obtained:  set is nonempty set;  world is cognizable; physical non-material  objects of  world act on material  objects of material world and change a physical state of material  objects; at least, some non-material  objects (but, probably, all or nearly all  objects) are capable to control interactions of material objects, energy balance of these interactions, energy pumping-over between material objects and transformation of energy from one its kind in another. Non-material  objects act by unusual non-forcing, non-energy way. According to physical laws of material  world, long-range action (LRA-fields), really, cannot exist, more precisely, these cannot exist as material objects. However, according to experimental data, LRA-fields really exist. LRA-fields belong to  set and have above properties of  objects. There is single material - non-material world. The  and components of this world physically interact with each other, that necessitates adequate development of physics. (Processes of a high level complexity, for example spirit actions, exceed limits of physics competence.) The above conclusions are valid under following restrictions on long-range interaction: energy conservation law is not violated; actions are transferred at a distance by physical fields; thesis the planets (and all more stars) cannot influence on Earth by means of energy fields is valid. If these restrictions are violated, other explanations of LRA-fields existence are not excluded. Discussion on different directions of thoughts is useful.

Highlights

  • E NMP set is nonempty set; the NMP world is cognizable; physical non-material NMP objects of the NMP world act on material M objects of the material M world and change a physical state of the material M objects; at least, some non-material NMP objects are capable to control interactions of material objects, energy balance of these interactions, energy pumping-over between material objects and transformation of energy from one its kind in another

  • The M and NMP components of this world physically interact with each other, that necessitates the adequate development of physics. (Processes of a high level complexity, for example spirit actions, exceed the limits of physics competence.) The above conclusions are valid under the following restrictions on the long-range interaction: the energy conservation law is not violated; the actions are transferred at a distance by physical fields; thesis "the planets cannot influence on the Earth by means of energy fields" is valid

  • Academic physics did not respond to the question: whether or not there are at least some non-material bodies or fields from the point of natural sciences view? Why there is no answer to the given question? The matter is that in academic physics reigns the conviction: it is impossible to study the non-material world by the methods of materialistic, in essence, science - physics

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Summary

Definition and Paradox of the Long-range Action Fields

Since the physical nature of the long-range action fields (LRA-fields) is not yet ascertained, we cannot give them full physical definition now. The physical model of LRA-fields has been developed in the result, as the logic consequence of experimental and observational data (Vasiliev, 2004, 2008a, 2008b, 2009a, 2009b, 2010). According to the physical model, LRA-fields have the second characteristic peculiarity: under certain conditions, LRA-fields interact nonlinearly and create brief abrupt flashes of their actions. The physical model allows to compute cycles and moments of the brief abrupt flashes of LRA-fields actions (Vasiliev, 2008a, 2008b, 2009a, 2009b, 2010). According to the developed physical model, LRA-fields depend on external and internal movements of their sources, on the sources structure and processes occurring in them. All reasonings are carried out below from the positions of classical physics

Experimental Data on the LRA-fields Existence
Some Contiguous Problems
Summary Results and Brief Explanations to Them
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