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Calculation of the tunneling factor for proton transport

Calculation of the tunneling factor for proton transport

M.A. Vorotyntsev and G.M. Chonishvili

Moscow University Physics Bulletin 1976. 31. N 1. P. 79
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One application of the tetrad method in the classical theory of radiation

One application of the tetrad method in the classical theory of radiation

A.B. Kukanov and N.D. Naumov

Moscow University Physics Bulletin 1976. 31. N 1. P. 83
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Low-temperature chambers for mossbauer diffraction experiments

Low-temperature chambers for mossbauer diffraction experiments

V.S. Zasimov and R.N. Kuz'min

Moscow University Physics Bulletin 1976. 31. N 1. P. 86
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Neutral currents in ant ineutrino splitting of the deuteron

Neutral currents in ant ineutrino splitting of the deuteron

В.K. Kerimov and M.Ya. Safin

Moscow University Physics Bulletin 1976. 31. N 1. P. 89
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Relation between the blocking effect and rutherford scattering in the nonlocal-statistical theory of the interaction of charged particles with single crystals

Relation between the blocking effect and rutherford scattering in the nonlocal-statistical theory of the interaction of charged particles with single crystals

N.M. Sadykov

Moscow University Physics Bulletin 1975. 30. N 6. P. 1

The relation between blocking and Rutherford scattering is investigated in Vlasov and Kuraev's nonlocal-statistical theory of orientation effects. A solution is obtained for the initial equation system of the theory in the second approxima­ tion, and it is shown that Rutherford scattering emerges in the second approxi­ mation, while blocking effects are obtained in the first approximation with re­ spect to the charge of the beam particles. The calculation was made without consideration of the screening factor.

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Stability of round pipe flows

Stability of round pipe flows

L.A. Dikii and 0.A. Klitsenko

Moscow University Physics Bulletin 1975. 30. N 6. P. 10

It is shown that stabillty of rotationally symmetrical perturbations of a flow of an ideal fluid in a round pipe implies that the velocities of asymmetrical perturbations are bounded.

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The polarization of radiation in an undulator

The polarization of radiation in an undulator

A.S. Vshivtsev and V.Ch. Zhukovskii

Moscow University Physics Bulletin 1975. 30. N 6. P. 13

The intensity of undulator radiation is calculated and its polarization is considered. The direction of the electric field of the radiation is deterrnined for a given frequency and a given wave vector. The maximum undulator length limit at which electron energy losses can be neglected is found.

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On the theory of the generator with optical delay line

On the theory of the generator with optical delay line

V.N. Parygin and Kh. Gassab

Moscow University Physics Bulletin 1975. 30. N 6. P. 17

The paper presents an experimental study uf a generator with an optical delay line in the feedback circuit. The amplitude and frequency characteristics of the generator are studied at various lengths of the optical delay line. The possjbility of using such a generator for distance measurement is pointed out.

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Toward a theory of the propagation of finite-amplitude waves in a relaxing medium

Toward a theory of the propagation of finite-amplitude waves in a relaxing medium

В.K. Novikov

Moscow University Physics Bulletin 1975. 30. N 6. P. 22

The propagation of a wave of finite amplitude in media described by a nonlinear relaxation c(auation is analyzed theoretically. It is shown that inclusion of nonlinear "relaxationn" terms in the dynamic equations results in an increase in the effective value of the nonlinearity in the range ωτ~ 1.

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An investigation of the kinematic structure of a turbulent flow and the motion of solid particles in its bottom region

An investigation of the kinematic structure of a turbulent flow and the motion of solid particles in its bottom region

N.A. Mikhailova and G.S. Fomenko

Moscow University Physics Bulletin 1975. 30. N 6. P. 25

Statistical analysis (based on motion-picture data) of the paths of neutral­ buoyancy indicators and heavy particles (mean values and second-order correlation moments for the velocity components) is used to propose a three-layer model of a turbulent flow with solid particles in skipping motion in its bottom region. The presence of a concentration maximum of the solid particles at a fixed distance from the bottom of the flow is explained.

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