Get Adobe Flash player
Physics

New Distance Learning Program at UCL: MSc in Physics and Engineering in Medicine.

2014-04-06

Elina Arakelyan

It is hard to overestimate the role of  physics, computing and high technologies in modern healthcare. This is why the University College of London (UCL),  one of the worl'd leading universities, has launched in 2011 a distance-learning version of their MSc program in  Physics and  Engineering in Medicine. As one of the first graduates, I highly recommend this very comprehensive course to everyone who is interested in different aspects of biomedical reserach and clinical applications of physics.

Click here for more information

 

Wiring and Switching of Cold Atom Streams

2007-12-19

Guennadi Kouzaev

1. Introduction Contemporary discussion on the role of quantum effects in the brain is rather far from the final conclusion. Any study of quantum effects which have similarity to the human brain functions is interesting and fruitful. Many new technical solu...

Read more...

Topological Processing of Spatio-Temporal Electromagnetic Field Shapes

2007-01-12

Guennadi Kouzaev

Abstract. This paper is on the spatio-temporal signals with the topologically modulated electromagnetic fields. The carrier of the digital information is the topological scheme composed of the separatrices-manifolds and equilibr...

Read more...

THE QUANTUM – THERMODYNAMIСS THEORY OF THE GRAVITATION. CONDITIONS OF A MATTER EXISTENCE AND A STRUCTURE OF THE UNIVERSE

2011-11-28

Vladimir Kuev

We publish this book presentation just for discussion. Please, send us your feedback.

(The book summary)

The quantum-thermodynamics theory of the gravitation (QTTG) was created. The theory is based on the idea of material (charge) form of a matter existence in the space of the Universe. Irreversible processes flows in it. Emission of gravitons from a matter (charge) happens thanks to these processes. They provide materialization of a matter (charge) in the real world after absorption by Higgs field. Quantum particle was discovered in the form of exchangeable mass of matter (m1). There was established its value: m1 = 2,177•10-8kg.   The value is equivalent to Planck energy and mass of planckeon. Quantum particle of charge was discovered in a form of exchangeable mass of charge (m1q). There was established its value: m1q = 1,589•10-10kg. The value is equivalent to mass of planckeon’s charge and 1/137 of Planck’s energy. There was shown that the value of exchangeable mass of a matter (charge) (m1) consists of gravitations’ oscillators. Each oscillator is dynamic system composed of two moving parallel towards each other or waving in antiphase for solid bodies: particles, atoms or molecules. Mass of proton was adopted as a mass of the gravitation’s oscillator. The quantity of gravitation’s oscillators  composing  one  exchangeable  mass  of  a  matter (charge)  is  equal  to  NA1= 1,301•1019.

Read more...

The physical nature of the decalogoriphmic periodicity phenomenon

2005-07-01

V.V. Petrunenko 

 

Part 1. Microsystems

 

The phenomenon of decalogoriphmic periodicity was found out first in distributions of trial bodies of the Solar system (at the end of 1974) on parameter lg e, where e = r/rog – r – distance between interacting objects, rog – gravitational radius of the central mass [1]. Then in distributions of sections of radiating capture of neutrons by a nucleus atom [2] on size lg W, where W – kinetic energy of neutrons, and also in distributions lg Wc, where Wc – energy of a nucleon connection in a nucleus of atom [3-5], electron  in atom [6], then in conglomerations of galaxies [7] and, finally, in  distributionsof quasars, i.e. in the Metagalaxy [8]. Apparently, the spectrum of the phenomenon demonstration is very wide. This phenomenon is universal.

Read more...

Physical nature of the phenomenon of delogarithmic periodicity

2005-07-05

V.V. Petrunenko 

Physical NatuRe of the Phenomenon of delogarithmic Periodicity

 

Part 2. Astronomical Systems

 

Empirically the phenomenon of delogarithmic periodicity in astronomical systems is described by the formula of the type (1.36). This means that the theory describing this phenomenon in astronomical systems must be both relativistic and undulatory. The current existing theories of gravitational interaction are not of this type. In this connection our task is to find in the gravitational interaction the undulatory equation of the type (1.21). Since the mentioned phenomenon is observed not only in non-relativistic but also in relativistic areas of Metagalaxy, where the red shift z > 1, it is relevant and even necessary to start with the analysis of the law of gravitation, in particular with the finding the reasons of its universality.

Read more...