3,073 research outputs found

    Non-adiabatic dynamics of two strongly coupled nanomechanical resonator modes

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    The Landau-Zener transition is a fundamental concept for dynamical quantum systems and has been studied in numerous fields of physics. Here we present a classical mechanical model system exhibiting analogous behaviour using two inversely tuneable, strongly coupled modes of the same nanomechanical beam resonator. In the adiabatic limit, the anticrossing between the two modes is observed and the coupling strength extracted. Sweeping an initialized mode across the coupling region allows mapping of the progression from diabatic to adiabatic transitions as a function of the sweep rate

    Non-malleable codes for space-bounded tampering

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    Non-malleable codes—introduced by Dziembowski, Pietrzak and Wichs at ICS 2010—are key-less coding schemes in which mauling attempts to an encoding of a given message, w.r.t. some class of tampering adversaries, result in a decoded value that is either identical or unrelated to the original message. Such codes are very useful for protecting arbitrary cryptographic primitives against tampering attacks against the memory. Clearly, non-malleability is hopeless if the class of tampering adversaries includes the decoding and encoding algorithm. To circumvent this obstacle, the majority of past research focused on designing non-malleable codes for various tampering classes, albeit assuming that the adversary is unable to decode. Nonetheless, in many concrete settings, this assumption is not realistic

    Procedural and Judicial Limitations on Voir Dire - Constitutional Implications and Preservation of Error in Civil Cases.

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    The right to a trial by jury is meaningless without an effective voir dire. Recurring tort reform, rapid technological advancements, immediate access to media coverage of incidents that give rise to litigation have greatly expanded. Consequentially, courts are faced with the prospect that potential jurors’ opinions and attitudes have been tainted. In addition to these issues, trial courts display significant interest in promptly expediting the advancement of their dockets. Voir dire is an essential element of trial strategy. Voir dire allows counsel to establish rapport with potential jurors, introduce them to the issues and facts of the case, and identify the favorable and unfavorable jurors. Furthermore, voir dire allows attorneys to question prospective jurors in order to intelligently and effectually exercise peremptory challenges and challenges for cause. Additionally, Texas courts note that voir dire serves the legitimate purpose of indoctrinating the jury on the party’s view of the case. Restrictions on this right implicate a litigant’s ability to test the qualifications or fitness of jurors. Courts should not unduly place limitations on the time or scope of queries to a venire member. Therefore, the need for full and complete voir dire is critically important in today’s society

    Super-Maxwellian Helium Evaporation from Pure and Salty Water

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    Helium atoms evaporate from pure water and salty solutions in super-Maxwellian speed distributions, as observed experimentally and modeled theoretically.The experiments are performed by monitoring the velocities of dissolved He atoms that evaporate from microjets of pure water at 252 K and 4–8.5 molal LiCl and LiBr at 232–252 K. The average He atom energies exceed the flux-weighted Maxwell-Boltzmann average of 2RT by 30% for pure water and 70% for 8.5m LiBr. Classical molecular dynamics simulations closely reproduce the observed speed distributions and provide microscopic insight into the forces that eject the He atoms from solution. Comparisons of the density profile and He kinetic energies across the water-vacuum interface indicate that the He atoms are accelerated by He–water collisions within the top 1-2 layers of the liquid. We also find that the average He atom kinetic energy scales with the free energy of solvation of this sparingly soluble gas. This free-energydifference reflects the steeply decreasing potential of mean force on the He atoms in the interfacial region, whose gradient is the repulsive force that tends to expel the atoms. The accompanying sharp decrease in water density suppresses the He–water collisions that would otherwise maintain a Maxwell-Boltzmanndistribution, allowing the He atom to escape at high energies. Helium is especially affected by this reduction in collisions because its weak interactions make energy transfer inefficient

    Procedural and Judicial Limitations on Voir Dire - Constitutional Implications and Preservation of Error in Civil Cases.

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    The right to a trial by jury is meaningless without an effective voir dire. Recurring tort reform, rapid technological advancements, immediate access to media coverage of incidents that give rise to litigation have greatly expanded. Consequentially, courts are faced with the prospect that potential jurors’ opinions and attitudes have been tainted. In addition to these issues, trial courts display significant interest in promptly expediting the advancement of their dockets. Voir dire is an essential element of trial strategy. Voir dire allows counsel to establish rapport with potential jurors, introduce them to the issues and facts of the case, and identify the favorable and unfavorable jurors. Furthermore, voir dire allows attorneys to question prospective jurors in order to intelligently and effectually exercise peremptory challenges and challenges for cause. Additionally, Texas courts note that voir dire serves the legitimate purpose of indoctrinating the jury on the party’s view of the case. Restrictions on this right implicate a litigant’s ability to test the qualifications or fitness of jurors. Courts should not unduly place limitations on the time or scope of queries to a venire member. Therefore, the need for full and complete voir dire is critically important in today’s society

    Development of large-internal-surface-area nickel-metal plaques Final report, Jun. 18, 1964 - Sep. 30, 1965

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    Large internal surface area porous nickel metal plaques for rechargeable cadmium electrodes to improve nickel-cadmium batterie

    Cephalosporin-3’-diazeniumdiolate NO-donor prodrug PYRRO-C3D enhances azithromycin susceptibility of non-typeable Haemophilus influenzae biofilms

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    The file attached to this record is the author's final peer reviewed version. The Publisher's final version can be found by following the DOI link.Objectives: PYRRO-C3D is a cephalosporin-3-diazeniumdiolate nitric oxide (NO)-donor prodrug designed to selectively deliver NO to bacterial infection sites. The objective of this study was to assess the activity of PYRRO-C3D against non-typeable Haemophilus influenzae (NTHi) biofilms and examine the role of NO in reducing biofilm-associated antibiotic tolerance. Methods: The activity of PYRRO-C3D on in vitro NTHi biofilms was assessed through CFU enumeration and confocal microscopy. NO release measurements were performed using an ISO-NO probe. NTHi biofilms grown on primary ciliated respiratory epithelia at an air-liquid interface were used to investigate the effects of PYRRO-C3D in the presence of host tissue. Label-free LC/MS proteomic analyses were performed to identify differentially expressed proteins following NO treatment. Results: PYRRO-C3D specifically released NO in the presence of NTHi, while no evidence of spontaneous NO release was observed when the compound was exposed to primary epithelial cells. NTHi lacking β-lactamase activity failed to trigger NO release. Treatment significantly increased the susceptibility of in vitro NTHi biofilms to azithromycin, causing a log-fold reduction in viability (p<0.05) relative to azithromycin alone. The response was more pronounced for biofilms grown on primary respiratory epithelia, where a 2-log reduction was observed (p<0.01). Label-free proteomics showed that NO increased expression of sixteen proteins involved in metabolic and transcriptional/translational functions. Conclusions: NO release from PYRRO-C3D enhances the efficacy of azithromycin against NTHi biofilms, putatively via modulation of NTHi metabolic activity. Adjunctive therapy with NO mediated through PYRRO-C3D represents a promising approach for reducing biofilm associated antibiotic tolerance
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