BULLETIN OF THE LEBEDEV PHYISICS INSTITUTE
P.N.Lebedev Physics Institute of the Russian Academy of sciences

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1. Title:
THE EFFECT OF Ar+ IMPLANTATION ON THE GALVANOMAGNETIC PROPERTIES OF SEMIINSULATING GaAs1
Authors:
P.D. Berkis, A.S. Menounos, P.C. Euthymiou, V.S. Vavilov, C.D. Kourkoutas.



Abstract:


2. Title:
PERSISTENT PHOTOCONDUCTIVITY IN GaP:S AT LOW TEMPERATURES
Authors:
G.E. Zardas, P.C. Euthymiou, D.E. Theodorou, F.. Riesz, C.I. Symeonides, B.. Szentpali, V.S. Vavilov.



Abstract:


3. Title:
MACROSCOPIC QUANTUM OSCILLATIONS IN ANTIFERROMAGNETIC NANOCLUSTERS
Authors:
A.K. Zvezdin.



Abstract:


4. Title:
MOLECULAR MECHANISM OF GLUCOSE CONCENTRATION STABILIZATION IN BLOOD. I. PRINCIPLE OF ACTION
Authors:
M.V. Fock.



Abstract:
A chemical kinetic difference (with respect to concentration) mechanism of glucose influence on the formation and decomposition of insulin granules in β cells of the pancreas is proposed. Glucose has different effects on the rate of synthesis of special control molecules A and ? that form a stable compound AB. At low glucose concentrations, A molecules are synthesized faster than ? molecules, so that only A molecules, which promote granule formation, remain free in the cytoplasm of β-cells. At higher glucose concentrations, ? molecules are synthesized faster then A molecules, and only ? molecules, which promote decomposition of insulin granules, remain free in the cytoplasm. The results of the glucose test in the normal state are explained within this mechanism.


5. Title:
MOLECULAR MECHANISM OF GLUCOSE CONCENTRATION STABILIZATION IN BLOOD. II. THE INFLUENCE OF THE GLUCOSE-FERMENT BINDING ENERGY
Authors:
M.V. Fock.



Abstract:


6. Title:
HE INFLUENCE OF VARIATIONS IN A SYSTEM OF CONDUCTION ELECTRONS IN NdCeCuO ON THE UPPER CRITICAL MAGNETIC FIELD Hc2
Authors:
N.P. Shabanova, V.S. Nozdrin, S.I. Krasnosvobodtsev, V.A. Dravin, A.I. Golovashkin.



Abstract:


7. Title:
NONLINEAR LONGITUDINAL WAVES IN METALLIC PLATES WITH ACCOUNT OF THE INTERACTION BETWEEN DEFORMATION AND DEFECT DENSITY FIELDS
Authors:
F.. Mirzoev, L.A. Shelepin.



Abstract:


8. Title:
WEINBERG ENERGY-MOMENTUM PSEUDOTENSOR FOR THE SCHWARZSCHILD FIELD
Authors:
A.I. Nikishov.



Abstract: