599 research outputs found

    Michael D. Healy to Mr. Meredith (1 October 1962)

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    https://egrove.olemiss.edu/mercorr_pro/1326/thumbnail.jp

    Porous silica spheres as indoor air pollutant scavengers

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    Porous silica spheres were investigated for their effectiveness in removing typical indoor air pollutants, such as aromatic and carbonyl-containing volatile organic compounds (VOCs), and compared to the commercially available polymer styrene-divinylbenzene (XAD-4). The silica spheres and the XAD-4 resin were coated on denuder sampling devices and their adsorption efficiencies for volatile organic compounds evaluated using an indoor air simulation chamber. Real indoor sampling was also undertaken to evaluate the affinity of the silica adsorbents for a variety of indoor VOCs. The silica sphere adsorbents were found to have a high affinity for polar carbonyls and found to be more efficient than the XAD-4 resin at adsorbing carbonyls in an indoor environment

    Spring-Summer Temperatures Since AD 1780 Reconstructed from Stable Oxygen Isotope Ratios in White Spruce Tree-Rings from the Mackenzie Delta, Northwestern Canada

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    High-latitude delta(exp 18)O archives deriving from meteoric water (e.g., tree-rings and ice-cores) can provide valuable information on past temperature variability, but stationarity of temperature signals in these archives depends on the stability of moisture source/trajectory and precipitation seasonality, both of which can be affected by atmospheric circulation changes. A tree-ring delta(exp 18)O record (AD 1780-2003) from the Mackenzie Delta is evaluated as a temperature proxy based on linear regression diagnostics. The primary source of moisture for this region is the North Pacific and, thus, North Pacific atmospheric circulation variability could potentially affect the tree-ring delta(exp 18)O-temperature signal. Over the instrumental period (AD 1892-2003), tree-ring delta(exp 18)O explained 29% of interannual variability in April-July minimum temperatures, and the explained variability increases substantially at lower-frequencies. A split-period calibration/verification analysis found the delta(exp 18)O-temperature relation was time-stable, which supported a temperature reconstruction back to AD 1780. The stability of the delta(exp 18)O-temperature signal indirectly implies the study region is insensitive to North Pacific circulation effects, since North Pacific circulation was not constant over the calibration period. Simulations from the NASA-GISS ModelE isotope-enabled general circulation model confirm that meteoric delta(exp 18)O and precipitation seasonality in the study region are likely insensitive to North Pacific circulation effects, highlighting the paleoclimatic value of tree-ring and possibly other delta(exp 18)O records from this region. Our delta(exp 18)O-based temperature reconstruction is the first of its kind in northwestern North America, and one of few worldwide, and provides a long-term context for evaluating recent climate warming in the Mackenzie Delta region

    The significance of functional renal obstruction in predicting pathologic stage of upper tract urothelial carcinoma.

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    BACKGROUND AND PURPOSE: Assessing the severity of upper tract urothelial carcinoma (UTUC) has been difficult because of inadequate biopsy specimens. Additional predictive parameters of disease stage would be useful when deciding a treatment plan; it has been suggested that preoperative hydronephrosis can be a surrogate. We examined the relationship between preoperative ipsilateral renal obstruction identified by imaging with final pathologic stage after nephroureterectomy (NU) for UTUC. We then analyzed those patients with ipsilateral renal obstruction and examined if tumor location is associated with an advanced pathologic stage. METHODS: Patients who underwent NU for UTUC between the years 2001 to 2013 were analyzed and relevant staging studies and pathology were reviewed. Criteria for ipsilateral renal obstruction were defined by the presence of a delayed nephrogram on CT scan, renal cortical atrophy with associated hydronephrosis on cross-sectional imaging, and/or \u3e10% split function discrepancy on nuclear renal scintigraphy with associated hydronephrosis. RESULTS: Eighty-two patients met inclusion criteria; 26/82 (31.7%) had locally advanced disease (pT3/T4), while 56/82 (63.4%) had organ-confined (≀pT2) disease. Of the patients with pT3/T4 disease, 10/26 (38.5%) demonstrated radiographic evidence of functional obstruction of the ipsilateral renal unit; similarly, in patients with ≀pT2 disease, 21/56 (37.5%) demonstrated ipsilateral renal obstruction (P=0.93). Of the patients with ipsilateral renal obstruction, in those patients with pT3/T4 disease, 7/10 (70.0%) had ureteral tumor involvement while 9/21 (42.9%) patients with ≀pT2 disease had tumor in the ureter (P=0.25). CONCLUSIONS: This study suggests that renal obstruction by radiographic analysis does not always predict advanced stage. In addition, there is a trend toward advanced stage when a patient has radiographic evidence of ipsilateral renal dysfunction and a ureteral tumor

    Quantized Scaling of Growing Surfaces

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    The Kardar-Parisi-Zhang universality class of stochastic surface growth is studied by exact field-theoretic methods. From previous numerical results, a few qualitative assumptions are inferred. In particular, height correlations should satisfy an operator product expansion and, unlike the correlations in a turbulent fluid, exhibit no multiscaling. These properties impose a quantization condition on the roughness exponent χ\chi and the dynamic exponent zz. Hence the exact values χ=2/5,z=8/5\chi = 2/5, z = 8/5 for two-dimensional and χ=2/7,z=12/7\chi = 2/7, z = 12/7 for three-dimensional surfaces are derived.Comment: 4 pages, revtex, no figure

    Directed polymers in high dimensions

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    We study directed polymers subject to a quenched random potential in d transversal dimensions. This system is closely related to the Kardar-Parisi-Zhang equation of nonlinear stochastic growth. By a careful analysis of the perturbation theory we show that physical quantities develop singular behavior for d to 4. For example, the universal finite size amplitude of the free energy at the roughening transition is proportional to (4-d)^(1/2). This shows that the dimension d=4 plays a special role for this system and points towards d=4 as the upper critical dimension of the Kardar-Parisi-Zhang problem.Comment: 37 pages REVTEX including 4 PostScript figure

    Non-universal exponents in interface growth

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    We report on an extensive numerical investigation of the Kardar-Parisi-Zhang equation describing non-equilibrium interfaces. Attention is paid to the dependence of the growth exponents on the details of the distribution of the noise. All distributions considered are delta-correlated in space and time, and have finite cumulants. We find that the exponents become progressively more sensitive to details of the distribution with increasing dimensionality. We discuss the implications of these results for the universality hypothesis.Comment: 12 pages, 5 figures; to appear in Phys. Rev. Let
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