2,556 research outputs found
Distributed OpenGL Rendering in Network Bandwidth Constrained Environments
Display walls made from multiple monitors are often used when very high resolution images are required. To utilise a display wall, rendering information must be sent to each computer that the monitors are connect to. The network is often the performance bottleneck for demanding applications, like high performance 3D animations. This paper introduces ClusterGL; a distribution library for OpenGL applications. ClusterGL reduces network traffic by using compression, frame differencing and multi-cast. Existing applications can use ClusterGL without recompilation. Benchmarks show that, for most applications, ClusterGL outperforms other systems that support unmodified OpenGL applications including Chromium and BroadcastGL. The difference is larger for more complex scene geometries and when there are more display machines. For example, when rendering OpenArena, ClusterGL outperforms Chromium by over 300% on the Symphony display wall at The University of Waikato, New Zealand. This display has 20 monitors supported by five computers connected by gigabit Ethernet, with a full resolution of over 35 megapixels. ClusterGL is freely available via Google Code
Heat-flow monotonicity of Strichartz norms
Most notably we prove that for the classical Strichartz norm associated to the
free Schr\"{o}dinger equation is nondecreasing as the initial datum evolves
under a certain quadratic heat-flow.Comment: 11 page
What Works? A Study of Effective Early Childhood Mental Health Consultation Programs
Examines factors that lead to desirable outcomes in mental health consultation programs: solid program infrastructure, highly qualified consultants, and quality support services. Analyzes targeted outcomes, measurements, and intensity of interventions
Carbon Nanotube-based Sensor and Method for Continually Sensing Changes in a Structure
A sensor has a plurality of carbon nanotube (CNT)-based conductors operatively positioned on a substrate. The conductors are arranged side-by-side, such as in a substantially parallel relationship to one another. At least one pair of spaced-apart electrodes is coupled to opposing ends of the conductors. A portion of each of the conductors spanning between each pair of electrodes comprises a plurality of carbon nanotubes arranged end-to-end and substantially aligned along an axis. Because a direct correlation exists between resistance of a carbon nanotube and carbon nanotube strain, changes experienced by the portion of the structure to which the sensor is coupled induce a change in electrical properties of the conductors
Pressure Sensitive Paint Measurements on 15% Scale Rotor Blades in Hover
This paper describes a proof of concept test to examine the feasibility of using pressure sensitive paint (PSP) to measure the pressure distributions on a rotor in hover. The test apparatus consisted of the US Army 2-meter Rotor Test Stand (2MRTS) and 15% scale swept tip rotor blades. Two camera/rotor separations were examined: 0.76 and 1.35 radii. The outer 15% of each blade was painted with PSP. Intensity and lifetime based PSP measurement techniques were attempted. Data were collected from all blades at thrust coefficients ranging from 0.004 to 0.009
Controlled Deposition and Alignment of Carbon Nanotubes
A carbon nanotube (CNT) attraction material is deposited on a substrate in the gap region between two electrodes on the . substrate. An electric potential is applied to the two electrodes. The CNT attraction material is wetted with a solution defined by a carver liquid having carbon nanotubes (CNTs) suspended therein. A portion of the CNTs align with the electric field and adhere to The CNT attraction material. The carrier liquid and any CNTs not adhered to the CNT attraction material are then removed
Characterization of neurophysiologic and neurocognitive biomarkers for use in genomic and clinical outcome studies of schizophrenia.
BackgroundEndophenotypes are quantitative, laboratory-based measures representing intermediate links in the pathways between genetic variation and the clinical expression of a disorder. Ideal endophenotypes exhibit deficits in patients, are stable over time and across shifts in psychopathology, and are suitable for repeat testing. Unfortunately, many leading candidate endophenotypes in schizophrenia have not been fully characterized simultaneously in large cohorts of patients and controls across these properties. The objectives of this study were to characterize the extent to which widely-used neurophysiological and neurocognitive endophenotypes are: 1) associated with schizophrenia, 2) stable over time, independent of state-related changes, and 3) free of potential practice/maturation or differential attrition effects in schizophrenia patients (SZ) and nonpsychiatric comparison subjects (NCS). Stability of clinical and functional measures was also assessed.MethodsParticipants (SZ n = 341; NCS n = 205) completed a battery of neurophysiological (MMN, P3a, P50 and N100 indices, PPI, startle habituation, antisaccade), neurocognitive (WRAT-3 Reading, LNS-forward, LNS-reorder, WCST-64, CVLT-II). In addition, patients were rated on clinical symptom severity as well as functional capacity and status measures (GAF, UPSA, SOF). 223 subjects (SZ n = 163; NCS n = 58) returned for retesting after 1 year.ResultsMost neurophysiological and neurocognitive measures exhibited medium-to-large deficits in schizophrenia, moderate-to-substantial stability across the retest interval, and were independent of fluctuations in clinical status. Clinical symptoms and functional measures also exhibited substantial stability. A Longitudinal Endophenotype Ranking System (LERS) was created to rank neurophysiological and neurocognitive biomarkers according to their effect sizes across endophenotype criteria.ConclusionsThe majority of neurophysiological and neurocognitive measures exhibited deficits in patients, stability over a 1-year interval and did not demonstrate practice or time effects supporting their use as endophenotypes in neural substrate and genomic studies. These measures hold promise for informing the "gene-to-phene gap" in schizophrenia research
Controlled Deposition and Alignment of Carbon Nanotubes
A carbon nanotube (CNT) attraction material is deposited on a substrate in the gap region between two electrodes on the substrate. An electric potential is applied to the two electrodes. The CNT attraction material is wetted with a solution defined by a carrier liquid having carbon nanotubes (CNTs) suspended therein. A portion of the CNTs align with the electric field and adhere to the CNT attraction material. The carrier liquid and any CNTs not adhered to the CNT attraction material are then removed
Metal Enrichment of the Intergalactic Medium in Cosmological Simulations
Observations have established that the diffuse intergalactic medium (IGM) at
z ~ 3 is enriched to ~0.1-1% solar metallicity and that the hot gas in large
clusters of galaxies (ICM) is enriched to 1/3-1/2 solar metallicity at z=0.
Metals in the IGM may have been removed from galaxies (in which they presumably
form) during dynamical encounters between galaxies, by ram-pressure stripping,
by supernova-driven winds, or as radiation-pressure driven dust efflux. This
study develops a method of investigating the chemical enrichment of the IGM and
of galaxies, using already completed cosmological simulations. To these
simulations, we add dust and (gaseous) metals, distributing the dust and metals
in the gas according to three simple parameterized prescriptions, one for each
enrichment mechanism. These prescriptions are formulated to capture the basic
ejection physics, and calibrated when possible with empirical data. Our results
indicate that dynamical removal of metals from >~ 3*10^8 solar mass galaxies
cannot account for the observed metallicity of low-column density Ly-alpha
absorbers, and that dynamical removal from >~ 3*10^10 solar mass galaxies
cannot account for the ICM metallicities. Dynamical removal also fails to
produce a strong enough mass-metallicity relation in galaxies. In contrast,
either wind or radiation-pressure ejection of metals from relatively large
galaxies can plausibly account for all three sets of observations (though it is
unclear whether metals can be distributed uniformly enough in the low-density
regions without overly disturbing the IGM, and whether clusters can be enriched
quite as much as observed). We investigate in detail how our results change
with variations in our assumed parameters, and how results for the different
ejection processes compare. (Abridged)Comment: Minor revision, 1 figure added addressing diffusion of metals after
their ejection. Accepted by ApJ. 31 EmulateApj Pages with 13 embedded
postscript figure
Using Pressure Sensitive Paint to Measure Aerodynamic Forces on a Rotor Blade in Hover
This report will present details of a Pressure Sensitive Paint (PSP) system for measuring global surface pressures on rotorcraft blades in hover at the Rotor Test Cell located in the 14- by 22-Foot Subsonic Tunnel complex at the NASA Langley Research Center. This work builds upon previous entries and focused on collecting measurements from the upper and lower surface simultaneously. From these results, normal force (F (sub z)) values can be obtained. To date, this is the first time that the Pressure Sensitive Paint technique has been used for these types of measurements on rotor blades. In addition, several areas of improvement have been identified and are currently being developed for future testing
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