ÈÍÔÎÐÌÀÖÈÎÍÍÛÉ ÁÞËËÅÒÅÍÜ "ÑÒÀÒÜÈ" N.36   12.09.05

          28.0 ÁÈÎËÎÃÈß

    1. Choi J. a.o.   Dynamic Model for Failures in Biological
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    2. Krawczyk M.J., Kulakowski K. Off-Lattice Simulation of the
Solid Phase DNA Amplification. //Comput. Phys. Commun. - 2005.-
v.170, N.2.  - p.131-136.  - Bibliogr.:6.

    3. Zhou J. a.o.   LORES: Low Resolution Shape Program for the
Calculation of Small Angle Scattering Profiles for Biological
Macromolecules in Solution. //Comput. Phys. Commun. - 2005.- v.170,
N.2.  - p.186-204.  - Bibliogr.:58.


          28.08 Ýêîëîãèÿ

    4. Adiks T.G. a.o.   Lidar Detection of Aerosol Clouds Caused by
City Traffic. //Laser Physics. - 2005.- v.15, N.5.  - p.739-743.  -
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    5. Kireev S.V. a.o.   Development of a Real-Time Absorpion
Method for Detecting the Mercaptan Odorizing Mixture of Nature Gas.
//Laser Physics. - 2005.- v.15, N.5.  - p.744-750.  - Bibliogr.:12.


    6. Lipowski A. Periodicity of Mass Extinctions Without an
Extraterrestrial Cause. //Phys. Rev.E. - 2005.- v.71, N.5, Pt.1.  -
p.052902.  - Bibliogr.:94.

    7. Szabo G. Competing Associations in Six-Species Psedator-Prey
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          Ñ 1 ÌÀÒÅÌÀÒÈÊÀ

    8. Wilkins D.R. William Rowan Hamilton: Mathematical Genius.
//Phys. World. - 2005.- v.18, N.8.  - p.33-36.  - Bibliogr.:2.


          Ñ 133 ÄÈÔÔÅÐÅÍÖÈÀËÜÍÛÅ È ÈÍÒÅÃÐÀËÜÍÛÅ ÓÐÀÂÍÅÍÈß

    9. Gentle G. a.o.   Summation of Divergent Series and Borel
Summability for Strongly Dissipative Differential Equations with
Periodic or Quasiperiodic Forcing Terms. //J.Math. Phys. - 2005.-
v.46, N.6.  - p.062704.  - Bibliogr.:12.

    10. Volkov A.Yu. Noncommutative Hypergeometry. //Commun. Math.
Phys. - 2005.- v.258, N.2.  - p.257-273.  - Bibliogr.:15.


          Ñ 133.2à ÍÅËÈÍÅÉÍÛÅ ÓÐÀÂÍÅÍÈß ÌÀÒÅÌÀÒÈ×ÅÑÊÎÉ ÔÈÇÈÊÈ,
ÑÎËÈÒÎÍÛ.

    11. Ablowitz M.J. a.o.   Wave Dynamics in Optically Modulated
Waveguide Arrays. //Phys. Rev.E. - 2005.- v.71, N.5, Pt.2.  -
p.055602(R).  - Bibliogr.:15.

    12. Carinena J.F. a.o.   Lagrangian Formalism for Nonlinear
Second-Order Riccati Systems: One-Dimensional Integrability and
Two-Dimensional Superintegrability. //J.Math. Phys. - 2005.- v.46,
N.6.  - p.062703.  - Bibliogr.:39.

    13. Chang J-H. Hydrodynamic Reductions of the Dispersionless
Harry Dym Hierarchy. //J.Phys.A: Math. Gen. - 2005.- v.38, N.29.  -
p.6505-15.  - Bibliogr.:44.

    14. Chavchanidze G. Involutive Orbits of Non-Noether Symmetry
Groups. //J.Phys.A: Math. Gen. - 2005.- v.38, N.29.  - p.6517-24.  -
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    15. Dai B., Terng C-L. Periodic and Homoclinic Solutions of the
Modified 2+1 Chiral Model. //J.Math. Phys. - 2005.- v.46, N.6.  -
p.062706.  - Bibliogr.:12.

    16. Egorov O. a.o.   Discrete Quadratic Cavity Solitons. //Phys.
Rev.E. - 2005.- v.71, N.5, Pt.2.  - p.056612.  - Bibliogr.:32.

    17. Geronimo J.S. a.o.   Algebro-Geometric Solutions of the
Baxter-Szego Difference Equation. //Commun. Math. Phys. - 2005.-
v.258, N.1.  - p.149-117.  - Bibliogr.:49.

    18. Ghoshal D. a.o.   Neveu-Schwarz Fivebrane and Tachyon
Condensation. //J.Math. Phys. - 2005.- v.46, N.6.  - p.062301.  -
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    19. Gor'kov L.P., Grigoriev P.D. Soliton Phase Near
Antiferromagnetic Quantum Critical Point in Q1D Conductors.
//Europhys. Lett. - 2005.- v.71, N.3.  - p.425-430.  - Bibliogr.:17.


    20. Groodman R.H., Haberman R. Vector-Soliton Collision Dymamics
in Nonlinear Optical Fibers. //Phys. Rev.E. - 2005.- v.71, N.5,
Pt.2.  - p.056605.  - Bibliogr.:41.

    21. Jisha C.P. a.o.   Variational Approach to Spatial Optical
Solitons in Bulk Cubic-Quintic Media Stabilized by Self-Induced
Multiphoton Ionization. //Phys. Rev.E. - 2005.- v.71, N.5, Pt.2.  -
p.056615.  - Bibliogr.:24.

    22. Kazantseva E.V. a.o.   Reduced Maxwell-Duffing Description
of Extremely Short Pulses in Nonresonant Media. //Phys. Rev.E. -
2005.- v.71, N.5, Pt.2.  - p.056622.  - Bibliogr.:41.

    23. Khomeriki R., Leon J. Bistability in the Sine-Gordon
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    24. Kruglov V.I. a.o.   Exact Solutions of the Generalized
Nonlinear Schrodinger Equation with Distributed Coefficients.
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    25. Leitner Y., Malomed B.A. Stability of Double-Peaked Solitons
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2005.- v.71, N.5, Pt.2.  - p.057601.  - Bibliogr.:10.

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    27. Malomed B.A. a.o.   Coupled-Mode Theory for Spatial Gap
Solitons in Optically Induced Lattices. //Phys. Rev.E. - 2005.-
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    28. Michaelis D. a.o.   Ising-Bloch Transition for the
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    29. Noullez A. a.o.   Global Picture of Self-Similar and
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2005.- v.71, N.5, Pt.2.  - p.056305.  - Bibliogr.:33.

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    32. Rice M.J., Gartstein Y.N. The Excitonic Ground State of the
Half-Filled Peierls Insulator. //J.Phys.: Condens. Matter. - 2005.-
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2005.- v.71, N.5, Pt.2.  - p.055303(R).  - Bibliogr.:19.

    34. Scarfone A.M. Canonical Quantization of Nonlinear Many-Body
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    35. Takemura K. The Heun Equation and the
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    36. Vicencio R.A. a.o.   Polarization Instability, Steering, and
Switching of Discrete Vector Solitons. //Phys. Rev.E. - 2005.- v.71,
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    37. Willis C.R., Farzaneh M. Reply on "Comment on 'Soliton
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2005.- v.71, N.5, Pt.2.  - p.058602.  - Bibliogr.:3.


          Ñ 15 ÒÅÎÐÈß ÂÅÐÎßÒÍÎÑÒÅÉ È ÌÀÒÅÌÀÒÈ×ÅÑÊÀß ÑÒÀÒÈÑÒÈÊÀ

    38. Blomker D. a.o.   Modulation Equations: Stochastic
Bifurcation in Large Domains. //Commun. Math. Phys. - 2005.- v.258,
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    39. Levin G., Swiatek G. Dynamics and Universality of Unimodal
Mappings with Infinite Criticality. //Commun. Math. Phys. - 2005.-
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    40. Levin G., Swiatek G. Hausdorff Dimension of Julia Sets of
Feigenbaum Polynomials with High Criticaluty. //Commun. Math. Phys.
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          Ñ 17 ÂÛ×ÈÑËÈÒÅËÜÍÀß ÌÀÒÅÌÀÒÈÊÀ.

    41. Okada Y. a.o.   On the Boundary Element Method for Billiards
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p.6675-88.  - Bibliogr.:31.

    42. Ujino H. a.o.   A Super-Integrable Discretization of the
Calogero Model. //J.Math. Phys. - 2005.- v.46, N.6.  - p.062705.  -
Bibliogr.:24.


          Ñ 17 á ×ÈÑËÅÍÍÎÅ ÈÍÒÅÃÐÈÐÎÂÀÍÈÅ.ÌÅÒÎÄÛ ÌÎÍÒÅ-ÊÀÐËÎ.

    43. Costa L.S.A., de-Souza A.J.F. Continuous Majority-Vote
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    44. De Virgiliis a.o.   Study of the Confined Ising Magnet with
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2005.- v.17, N.29.  - p.4579-604.  - Bibliogr.:69.

    45. Lyubartsev A.P. Simulation of Excited States and the Sign
Problem in the Path Integral Monte Carlo Method. //J.Phys.A: Math.
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    46. Naumis G.G. Monte Carlo Rejection as a Tool for Measuring
the Energy Landscape Scaling of Simple Fluids. //Phys. Rev.E. -
2005.- v.71, N.5, Pt.2.  - p.056132.  - Bibliogr.:47.

    47. Piilo J. a.o.   Scalin of Non-Markovian Monte Carlo
Wave-Function Methods. //Phys. Rev.E. - 2005.- v.71, N.5, Pt.2.  -
p.056701.  - Bibliogr.:31.

    48. Wu S.C. a.o.   Structural Transitions in Two-Dimensional
Hard-Sphere Systems. //Phys. Rev.E. - 2005.- v.71, N.5, Pt.2.  -
p.056112.  - Bibliogr.:39.

    49. Xu K., Josyula E. Multiple Translational Temperature Model
and Its Shock Structure Solution. //Phys. Rev.E. - 2005.- v.71, N.5,
Pt.2.  - p.056308.  - Bibliogr.:13.


          Ñ 17 ê ÐÀÑ×ÅÒÛ ÏÎ ÌÎËÅÊÓËßÐÍÎÉ ÄÈÍÀÌÈÊÅ.×ÈÑËÅÍÍÎÅ
ÌÎÄÅËÈÐÎÂÀÍÈÅ ÔÈÇÈ×ÅÑÊÈÕ ÇÀÄÀ×

    50. Bastea S. a.o.   Viscosity and Mutual Diffusion in Strongly
Asymmetric Binary Ionic Mixtures. //Phys. Rev.E. - 2005.- v.71, N.5,
Pt.2.  - p.056405.  - Bibliogr.:33.

    51. Bedrov D., Smith G.D. Molecular Dynamics Simulation Study of
the *a- and *b-Relaxation Processes in a Realistic Model Polymer.
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    52. Ceresoli D. a.o.   Exciton Self-Trapping in Bulk
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    53. Eliasson B. The Parallel Implementation of the
One-Dimensional Fourier Transformed Vlasov-Poisson System. //Comput.
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    54. Lim W. a.o.   Molecular Simulation of Paracetamol Molecules
Ordering Around Glycogen. //Phys. Rev.E. - 2005.- v.71, N.5, Pt.1.
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    55. McBride C. a.o.   Non-Markovian Melting: a Novel Procedure
to Generate Initial Liquid Like Phases for Small Molecules for Use
in Computer Simulation Studies. //Comput. Phys. Commun. - 2005.-
v.170, N.2.  - p.137-143.  - Bibliogr.:30.

    56. Richter A. a.o.   Density of States of Classical Spin
Systems with Continuous Degrees of Freedom. //Phys. Rev.E. - 2005.-
v.71, N.5, Pt.2.  - p.056705.  - Bibliogr.:21.

    57. Scuro S.R., Chin S.A. Forward Symplectic Integrators and the
Long-Time Phase Error in Periodic Motions. //Phys. Rev.E. - 2005.-
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    58. Wu J.-S. a.o.   Parallel Implementation of Molecular
Dynamics Simulation for Short-Ranged Interaction. //Comput. Phys.
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          Ñ 3 ÔÈÇÈÊÀ

    59. Ãóáàðåâ Â. Àêàäåìèê Þðèé Òðóòíåâ: "Áåñêîíå÷íûé ôðîíò ðàáîò".
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    60. Biggin S. Carlo Rubbia Dismissed from Energy Agency.
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    61. Buchanan M. Paper Resurfaces from Lost Physicist. //Phys.
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    63. Cho A. Two Mines in Running for Underground Lab. //Science.
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          Ñ 31 ÑÈÑÒÅÌÛ ÅÄÈÍÈÖ. ÔÓÍÄÀÌÅÍÒÀËÜÍÛÅ ÔÈÇÈ×ÅÑÊÈÅ
ÊÎÍÑÒÀÍÒÛ

    65. Mohr P.J., Taylor B.N. CODATA Recommended Values of the
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          Ñ 321 ÊËÀÑÑÈ×ÅÑÊÀß ÌÅÕÀÍÈÊÀ

    66. Deryabin M.V. On Asymptotic Hopf Invariant for Hamiltonian
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    67. Guo Y.-X. a.o.   Nonholonomic Versus Vakonomic Dynamics on a
Riemann-Cartan Manifold. //J.Math. Phys. - 2005.- v.46, N.6.  -
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    68. Lee M-H. a.o.   Classical Dynamics of Two-Electron Atoms
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    69. Maciejewski A.J., Przybylska M. Darboux Points and
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          Ñ 322 ÒÅÎÐÈß ÎÒÍÎÑÈÒÅËÜÍÎÑÒÈ

    70. Alba D. a.o.   Multipolar Expansions for Closed and Open
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    72. Barbero G.J.F. a.o.   Asymptotics of Regulated Field
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    73. Baskal S., Kim Y.S. Rotations Associated with Lorentz
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    74. Belich H.(Jr.) a.o.   Classical Solutions in a Lorentz
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    76. Golovko V.A. Quantum Effects in Many-Body Gravitating
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    77. Israel D. a.o.   D-Branes in Little String Theory. //Nucl.
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    79. Krisch J.P., Glass E.N. Energy Transport in the Vaidya
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    80. Liko T., Wesson P.S. An Exact Solution of the
Five-Dimensional Einstein Equations with Four-Dimensional de
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    83. Pelavas N. a.o.   VSI&sub(i) Space-Times and the
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          Ñ 323 ÊÂÀÍÒÎÂÀß ÌÅÕÀÍÈÊÀ

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    94. Filonov N., Klopp F. Absolutely Continuous Spectrum for the
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    95. Gravesen J. a.o.   Quantum-Mechanical Particle Confined to
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          Ñ 323 à ÔÓÍÄÀÌÅÍÒÀËÜÍÛÅ ÂÎÏÐÎÑÛ ÊÂÀÍÒÎÂÎÉ ÌÅÕÀÍÈÊÈ.ÑÊÐÛÒÛÅ
ÏÀÐÀÌÅÒÐÛ.ÏÀÐÀÄÎÊÑÛ.ÒÅÎÐÈß ÈÇÌÅÐÅÍÈÉ

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          Ñ 323 á ÊÂÀÍÒÎÂÛÅ ÀËÃÅÁÐÛ.ÑÓÏÅÐÑÈÌÌÅÒÐÈ×ÍÀß ÊÂÀÍÒÎÂÀß
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          Ñ 323.2 ÇÀÊÎÍÛ ÑÎÕÐÀÍÅÍÈß È ÎÁÙÈÅ ÒÅÎÐÈÈ ÐÅÀÊÖÈÉ.
ÏÎËßÐÈÇÀÖÈÎÍÍÛÅ ÝÔÔÅÊÒÛ. ÈÍÂÀÐÈÀÍÒÍÎÅ ÐÀÇËÎÆÅÍÈÅ ÀÌÏËÈÒÓÄ

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×ÀÑÒÈÖ.ÀËÃÅÁÐÀ ÒÎÊÎÂ.ÊÈÐÀËÜÍÛÅ ÒÅÎÐÈÈ.ÒÅÎÐÈß ÐÅÄÆÅ

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          Ñ 324.1å ÑÓÏÅÐÑÈÌÌÅÒÐÈ×ÍÛÅ ÒÅÎÐÈÈ. ÑÓÏÅÐÃÐÀÂÈÒÀÖÈß.
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          Ñ 324.2 ÍÅËÎÊÀËÜÍÛÅ È ÍÅËÈÍÅÉÍÛÅ ÒÅÎÐÈÈ ÏÎËß.ÒÅÎÐÈÈ Ñ
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          Ñ 325.4à Ýêîíîôèçèêà

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          Ñ 326 ÊÂÀÍÒÎÂÀß ÒÅÎÐÈß ÑÈÑÒÅÌ ÈÇ ÌÍÎÃÈÕ ×ÀÑÒÈÖ.ÊÂÀÍÒÎÂÀß
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          Ñ 341 ÀÒÎÌÍÛÅ ßÄÐÀ

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          Ñ 343 ßÄÅÐÍÛÅ ÐÅÀÊÖÈÈ

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    300. Gonzalez R. a.o.   Electrical Characterization of Large
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    302. Smirnov D. a.o.   Application of a Thin Double-Sided
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    303. Sun C.M. a.o.   Punch Through Float-Zone Silicon
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    304. Ulrici J. a.o.   Imaging Performance of a DEPFET Pixel
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          Ñ 345 ÓÑÊÎÐÈÒÅËÈ ÇÀÐßÆÅÍÍÛÕ ×ÀÑÒÈÖ

    305. Fu L.-x. Analysis and Estimate of the Influence of the
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    306. Giglia A. a.o.   The Beam Position Monitor of the BEAR
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    307. Huck H. a.o.   High-Intensity Positive Beams Extracted from
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    308. Lemuet F., Meot F. Developments in the Ray-Tracing Code
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    309. Miyazaki S. a.o.   High-Energy Proton Generation and
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    310. Naik D. a.o.   Design of a "Two-Ion Source" Charge Breeder
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    311. Ohkawa T. a.o.   Development of the Kicker Magnet for
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    312. Ohmori C. a.o.   A Multi-Harmonic RF System Using a MA
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    313. Ostroumov P.N. a.o.   An Innovative Concept for
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    314. Pozimski J., Meusel O. Space Charge Lenses for Particle
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    315. Qin Q. a.o.   Electron Cloud Instability Experiments on the
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    316. Strakhovenko V. a.o.   Generation of Circularly Polarized
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    317. Trabert E. a.o.   EUV Intercombination Transition Rates in
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    319. Xiang W. a.o.   Simulation of Extraction of High Current
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          Ñ 346 ÝËÅÌÅÍÒÀÐÍÛÅ ×ÀÑÒÈÖÛ

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    326. Nagahiro H. a.o.   Production of *Y*+ Hypernuclei with the
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    327. Nobary M.A.G., Javadi B. Direct Fragmentation of Quarkonia
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          Ñ 348 ßÄÅÐÍÛÅ ÐÅÀÊÒÎÐÛ. ÐÅÀÊÒÎÐÎÑÒÐÎÅÍÈÅ

    328. Shultis J.K. Determining Axial Fuel-Rod Power-Density
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          Ñ 349 ÄÎÇÈÌÅÒÐÈß È ÔÈÇÈÊÀ ÇÀÙÈÒÛ

    329. Àëåêñàõèí Ð.Ì. Çàñåäàíèå Ìåæäóíàðîäíîé êîìèññèèè ïî
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    330. Ìîêðîâ Þ.Ã. Àíàëèç ðåçóëüòàòîâ ðåêîíñòðóêöèè
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    332. Kastlander J., Bargholtz C. Efficient in Situ Method to
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    333. Yamada Y. a.o.   Applicability of the Electrical Low
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          Ñ 349 ä ÁÈÎËÎÃÈ×ÅÑÊÎÅ ÄÅÉÑÒÂÈÅ ÈÇËÓ×ÅÍÈÉ.

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          Ñ 353 ÔÈÇÈÊÀ ÏËÀÇÌÛ

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          Ñ 393 ÔÈÇÈÊÀ ÍÈÇÊÈÕ ÒÅÌÏÅÐÀÒÓÐ

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          Ñ 393 è7 ÌÅÕÀÍÈÇÌÛ, ÎÁÚßÑÍßÞÙÈÅ ÂÒÑÏ.

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          Ö 840 ÏÐÎÃÐÀÌÌÈÐÎÂÀÍÈÅ. ÎÁÙÈÅ ÂÎÏÐÎÑÛ

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