13,383 research outputs found

    The molecular electron density distribution meeting place of X-ray diffraction and quantum chemistry intermediate - between theory and experiment

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    Quantum chemistry and the concepts used daily in chemistry are increasingly growing apart. Among the concepts that are able to bridge the gap between theory and experimental practice, electron density distribution has an important place. The study of this distribution has led to new developments in theory, including Hellmann-Feynman theory and the density functional theory. The possibilities and limitations of these methods are discussed. Various ways of analysing the electron density distribution are presented and discussed. X-ray diffraction enables us to ÂżobserveÂż the electron density distribution and electrostatic properties. Experimental results are compared with the results of quantum chemical calculations. It is shown that even intermolecular interaction is observable with this method. Problems in determining ionic charges are seen to be inherent in the method

    Threshold value of three dimensional bootstrap percolation

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    The following article deals with the critical value p_c of the three-dimensional bootstrap percolation. We will check the behavior of p_c for different lengths of the lattice and additionally we will scale p_c in the limit of an infinite lattice.Comment: 8 pages including 9 figures for Int.J.Mod.Phys.

    Recursive relations in the core Hopf algebra

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    We study co-ideals in the core Hopf algebra underlying a quantum field theory.Comment: 11 page

    Effective Field Theory in Nuclear Many-Body Physics

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    Recent progress in Lorentz-covariant quantum field theories of the nuclear many-body problem (quantum hadrodynamics, or QHD) is discussed. The importance of modern perspectives in effective field theory and density functional theory for understanding the successes of QHD is emphasized. To appear in: 150 Years of Quantum Many-Body Theory: A conference in honour of the 65th birthdays of John W. Clark, Alpo J. Kallio, Manfred L. Ristig, and Sergio Rosati.Comment: 10 pages, REVTeX 3.0 with epsf.sty, plus 2 figure

    Recent Progress in Quantum Hadrodynamics

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    Quantum hadrodynamics (QHD) is a framework for describing the nuclear many-body problem as a relativistic system of baryons and mesons. Motivation is given for the utility of such an approach and for the importance of basing it on a local, Lorentz-invariant lagrangian density. Calculations of nuclear matter and finite nuclei in both renormalizable and nonrenormalizable, effective QHD models are discussed. Connections are made between the effective and renormalizable models, as well as between relativistic mean-field theory and more sophisticated treatments. Recent work in QHD involving nuclear structure, electroweak interactions in nuclei, relativistic transport theory, nuclear matter under extreme conditions, and the evaluation of loop diagrams is reviewed.Comment: 115 pages, REVTeX 3.0 with epsf.sty, ijmpe1.sty, srev.sty, symbols.sty, plus 10 figure

    Why Color-Flavor Locking is Just like Chiral Symmetry Breaking

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    We review how a classification into representations of color and flavor can be used to understand the possible patterns of symmetry breaking for color superconductivity in dense quark matter. In particular, we show how for three flavors, color-flavor locking is precisely analogous to the usual pattern of chiral symmetry breaking in the QCD vacuum.Comment: 9 pages, Proc. of the Judah Eisenberg Memorial Symposium, 'Nuclear Matter, Hot and Cold', Tel Aviv, April 14 - 16, 199

    CO oxidation studies over supported noble metal catalysts and single crystals: A review

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    The catalytic oxidation of CO over noble metal catalysts is reviewed. Results obtained on supported noble metal catalysts and single crystals both at high pressures and under UHV conditions are compared. The underlying causes which result in surface instabilities and multiple steady-state oscillations are considered, in particular, the occurrence of hot spots. CO islands of reactivity, surface oxide formation and phase transformations under oscillatory conditions are discussed

    Something of a Paradox: The Curious Neglect of Agriculture in Development

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    This paper argues that investment in agriculture has a large and continuing developmental importance in terms of both economic growth and poverty reduction. Moreover, targeted public resources have proven to be indispensable in achieving these results. Both arguments are supported with novel analyses which update and strengthen the traditional case for agriculture-led development with public-sector involvement. But despite the strong case for agriculture-led development strategies, the authors find that over the last three decades the financial resources allocated towards this sector have strongly declined. It is suggested that a shift towards new development paradigms since 1980 might be a significant explanation for this apparent Agricultural Paradox. This conjecture is tested with data on market reform impacts, PRSP contents and analyses of the intellectual resources devoted to the study of agriculture in development by both practitioners and researchers. The authors conclude with a critical discussion of these disturbing trends.

    Ramp wave loading experiments driven by heavy ion beams: a feasibility study

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    A new design for heavy-ion beam driven ramp wave loading experiments is suggested and analyzed. The proposed setup utilizes the long stopping ranges and the variable focal spot geometry of the high-energy uranium beams available at the GSI Helmholtzzentrum fĂĽr Schwerionenforschung and Facility for Antiproton and Ion Research accelerator centers in Darmstadt, Germany. The release wave created by ion beams can be utilized to create a planar ramp loading of various samples. In such experiments, the predicted high pressure amplitudes (up to 10 Mbar) and short timescales of compression (<10 ns) will allow to test the time-dependent material deformation at unprecedented extreme conditions
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