Showing 1,161 - 1,180 results of 105,810 for search '(( 3 points decrease ) OR ( 5 ((((we decrease) OR (nn decrease))) OR (a decrease)) ))', query time: 1.73s Refine Results
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    Critical temperature <em>T<sub>c</sub></em> (in units of <em>t</em>) for different values of the interpolating parameter <em>a</em> at half-filling (from top to bottom, <em>a</em>... by G Mazzucchi (557358)

    Published 2013
    “…The reason for such a choice is that the π-flux cubic lattice displays Dirac points and that decreasing the hopping coefficient in a spatial direction (say, <em>t<sub>z</sub></em>), these Dirac points are unaltered: it is then possible to study the 3D–2D interpolation towards the π-flux square lattice. …”
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    Subcellular Mechanical Imaging of Erythrocytes with Optically Correlated Scanning Ion Conductance Microscopy by Yunong Wang (10358970)

    Published 2025
    “…Mapping is achieved via a new approach to scanning ion conductance microscopy correlated with optical microscopy. A three-point calibration and affine transformation are utilized to correlate pixel locations registered in optical images with pipette position, which facilitates initial targeting and subsequent tracking and analysis of red blood cells. …”
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    S1 Graphical abstract - by Aman Goyal (19231397)

    Published 2025
    “…</p><p>Results</p><p>Between 1999 and 2020, 155,320 deaths were reported in patients with paroxysmal tachycardia. Overall, AAMR decreased from 4.8 to 3.7 per 100,000 population between 1999 and 2020, despite showing a significant increase from 2014 to 2020 (APC: 4.33; 95% CI: 3.53 to 5.56). …”
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    H + D<sub>2</sub> Reaction Dynamics in the Limit of Low Product Recoil Energy by J. Aldegunde (1373448)

    Published 2015
    “…Both experiment and theory recently showed that the H + D<sub>2</sub>(<i>v</i> = 0, <i>j</i> = 0) → HD­(<i>v</i>′ = 4, <i>j</i>′) + D reactions at a collision energy of 1.97 eV display a seemingly anomalous HD product angular distribution that moves in the backward direction as the value of <i>j</i>′ increases and the corresponding energy available for product recoil decreases. …”
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