1,008 research outputs found

    Cold quarks in medium: an equation of state

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    We derive a compact, semi-algebraic expression for the cold quark matter equation of state (EoS) in a covariant model that exhibits coincident deconfinement and chiral symmetry restoring transitions in-medium. Along the way we obtain algebraic expressions for: the number- and scalar-density distributions in both the confining Nambu and deconfined Wigner phases; and the vacuum-pressure difference between these phases, which defines a bag constant. The confining interaction materially alters the distribution functions from those of a Fermi gas and consequently has a significant impact on the model's thermodynamic properties, which is apparent in the EoS.Comment: 5 pages, 5 figure

    Phase diagram and critical endpoint for strongly-interacting quarks

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    We introduce a method based on the chiral susceptibility, which enables one to draw a phase diagram in the chemical-potential/temperature plane for strongly-interacting quarks whose interactions are described by any reasonable gap equation, even if the diagrammatic content of the quark-gluon vertex is unknown. We locate a critical endpoint (CEP) at (\mu^E,T^E) ~ (1.0,0.9)T_c, where T_c is the critical temperature for chiral symmetry restoration at \mu=0; and find that a domain of phase coexistence opens at the CEP whose area increases as a confinement length-scale grows.Comment: 4 pages, 3 figure

    A New Design for Low Impact Development in Urban Area- Infiltration Pipe and Gravel Pile

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    Source: ICHE Conference Archive - https://mdi-de.baw.de/icheArchive

    Comparison between the use of percutaneous nephrostomy and internal ureteral stenting in the management of long-term ureteral obstructions

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    AbstractObjectivesIn this study, we compared between the efficacy and complications of percutaneous nephrostomy (PCN) tubes and those of internal ureteral stents (e.g., double-J stents) used for relieving ureteral obstructions.Materials and methodsA retrospective chart review was performed. Between 2003 and 2009, 110 patients (63 females and 47 males, with a mean age of 63.6 years, range 19–89 years) who had an extrinsic ureteral obstruction, and subsequently underwent either PCN tube placement (n = 44) or internal ureteral stent placement (n = 66), were enrolled. Clinical data on patients with duration of diversion/drainage for more than 6 months were collected. Statistical analyses were performed with respect to a patient's age, etiology of the obstruction, outcome of residual hydronephrosis, and renal function tests.ResultsPatient ages and procedure-related complications were comparable between these two groups. The mean duration of diversion was 16.8 ± 8.6 months in the stent group versus 14.1 ± 6.7 months in the PCN group (p = 0.067). A smaller elevation in serum creatinine was noted in the PCN group (0.21 vs. 0.78 mg/dL, p = 0.03). Nine of 86 (10.4%) double-J stents were converted to PCN tubes during the study period. Residual hydronephrosis after decompression was more common in the stent group than in the PCN group (65.2% vs. 27.2%, p = 0.01). These findings suggest better preservation of renal function by a PCN tube.ConclusionsResults of this study suggest that, to better preserve renal function, PCN is the choice of treatment, irrespective of the etiology. While patients who have a PCN tube may have to carry an additional external drainage device, the complications did not seem to differ significantly from those who used internal drainage with a ureteral stent. Because young cancer patients may especially need aggressive chemotherapy to prolong their survival, PCN urinary drainage may become a better choice from the standpoint of cancer control

    β-Nd2Mo4O15

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    The title compound, dineodymium(III) tetra­molybdate(VI), has been prepared by a flux technique and is the second polymorph of composition Nd2Mo4O15. The crystal structure is isotypic with those of Ce2Mo4O15 and Pr2Mo4O15. It features a three-dimensional network composed of distorted edge- and corner-sharing NdO7 polyhedra, NdO8 polyhedra, MoO4 tetra­hedra and MoO6 octa­hedra

    Left ventricular mass and hemodynamic overload in normotensive hemodialysis patients

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    Left ventricular mass and hemodynamic overload in normotensive hemodialysis patients.BackgroundIt remains uncertain whether the hemodynamic parameters are important determinants of left ventricular mass (LVM) in normotensive chronic hemodialysis (NTHD) patients, as has been found in their hypertensive counterparts.MethodsForty NTHD patients (mean age, 53.7 ± 14.4 years; male/female, 18/22) without the requirement of antihypertensive drugs for at least six months were studied. Controls were 41 hypertensive hemodialysis patients (HTHD) and 46 normotensive subjects with normal renal function (NTNR). The influence of anthropometrics, cardiovascular structure and function, and volume status on LVM (by two-dimensional echocardiography) was analyzed by steps of multiple linear regression.ResultsAs compared with the NTNR and NTHD group, the HTHD group had obvious pressure and volume/flow overload, and greater LV wall thickness, chamber size and mass. In contrast, NTHD subjects had similar blood pressure, large artery function, LV chamber size and stroke volume as the NTNR subjects. However, the NTHD patients still had greater wall thickness and LVM, along with greater cardiac output, lower total peripheral resistance and lower end-systolic meridional stress to volume ratio (ESSV) than the NTNR group. LVM in the NTHD group was significantly positively related to averaged systolic blood pressure (SBPavg), body surface area, extracellular fluid (ECF), carotid intima-media thickness (IMT), aortic pulse wave velocity (PWV), and negatively related to ESSV and Kt/V. The independent significant noncardiac structural determinants of LVM in NTHD subjects were ESSV, SBPavg, PWV and SV (model r2 = 0.617, P < 0.001).ConclusionsThe NTHD patients, without significant pressure and volume overload, still had increased LVM that was partially explained by the persistent flow overload and subclinical LV dysfunction

    Soliton with a Pion Field in the Global Color Symmetry Model

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    We calculate the property of the global color symmetry model soliton with the pion field being included explicitly. The calculated results indicate that the pion field provides a strong attraction so that the eigen-energy of a quark and the mass of a soliton reduce drastically, in contrast to those with only the sigma field.Comment: 15 pages, 2 figure
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