25 research outputs found

    Fragmentation of a Circular Disc by Impact on a Frictionless Plate

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    The break-up of a two-dimensional circular disc by normal and oblique impact on a hard frictionless plate is investigated by molecular dynamics simulations. The disc is composed of numerous unbreakable randomly shaped convex polygons connected together by simple elastic beams that break when bent or stretched beyond a certain limit. It is found that for both normal and oblique impacts the crack patterns are the same and depend solely on the normal component of the impact velocity. Analysing the pattern of breakage, amount of damage, fragment masses and velocities, we show the existence of a critical velocity which separates two regimes of the impact process: below the critical point only a damage cone is formed at the impact site (damage), cleaving of the particle occurs at the critical point, while above the critical velocity the disc breaks into several pieces (fragmentation). In the limit of very high impact velocities the disc suffers complete disintegration (shattering) into many small fragments. In agreement with experimental results, fragment masses are found to follow the Gates-Gaudin-Schuhmann distribution (power law) with an exponent independent of the velocity and angle of impact. The velocity distribution of fragments exhibit an interesting anomalous scaling behavior when changing the impact velocity and the size of the disc.Comment: submitted to J. Phys: Condensed Matter special issue on Granular Medi

    The Construction of the Soviet Ethnography and “The Peoples of Siberia"

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    The multi-generation book project "The Peoples of Siberia" enabled a group of Leningrad-based scholars to reshape their museum into a Soviet ethnographic community. This article analyses the face-to-face performances, the legalistic stenographic documentation, the collective crafting of a single authoritative style, and a unique temporal frame as an important background to understand a hallmark volume in Siberian studies. The authors argue that the published volume indexes nearly thirty years of scholarly debates as much as it indexes the peoples it represents. The article concludes with a critical discussion of how this volume was translated and received by a Euro-American readership influencing the perception of Siberian peoples internationally. It also links the volume to contemporary post-Soviet publication projects which seem to retrace the same path. The article is based on extensive archival work and references collections recently discovered and which are presented for publication here for the first time.QC 20171106</p

    CMS : the TriDAS Project Technical Design Report; v.1, the Trigger Systems

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    CMS TriDAS project: Technical Design Report, Volume 1: The Trigger Systems

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    Contribution of inter-subunit interactions to the thermostability of Pyrococcus furiosus citrate synthase

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    Using citrate synthase from the hyperthermophile Pyrococcus furiosus (PfCS) as our test molecule, we show through guanidine hydrochloride-induced unfolding that the dimer separates into folded, but inactive, monomers before individual subunit unfolding takes place. Given that forces across the dimer interface are vital for thermostability, a robust computational method was derived that uses the University of Houston Brownian Dynamics (UHBD) program to calculate both the hydrophobic and electrostatic contribution to the dimerisation energy at 100°C. The results from computational and experimental determination of the lowered stability of interface mutants were correlated, being both of the same order of magnitude and placing the mutant proteins in the same order of stability. This computational method, optimised for hyperthermophilic molecules and tested in the laboratory, after further testing on other examples, could be of widespread use in the prediction of thermostabilising mutations in other oligomeric proteins for which dissociation is the first step in unfolding

    The forward muon spectrometer of ALICE

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