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5 results for “series expansion”
Raw data to "Series expansions in closed and open quantum many-body systems with multiple quasiparticle types"
<p>This collection of data is complementary to the publication "Series expansions in closed and open quantum many-body systems with multiple quasiparticle types", Lea Lenke, Andreas Schellenberger, Kai Phillip Schmidt, <a href="https://arxiv.org/abs/2302.01000">arXiv:2302.01000</a> (<a href="https://arxiv.org/abs/2302.01000">https://arxiv.org/abs/2302.01000</a>).</p> <p>It contains all data used for Figure 2 given in the file `Figure_2_complementary_data.yaml` and all needed data to recalculate the energies of the visualized modes in the files `Figure_2_coefficients_expectation_values.yaml` and `Figure_2_broad_signum_coefficients_expectation_values.yaml`.</p> <p>For the last two files, we used a program to calculate the coefficients. The source code for coefficient calculation is openly available under GitHub (<a href="https://github.com/FAU-kpslab/pcstpp_CoefficientGenerator">https://github.com/FAU-kpslab/pcstpp_CoefficientGenerator</a>) including configuration files to reproduce the coefficients given here.</p> <p>All files are self-consistent, for further information we recommend the comments directly in the files.</p> <p>For further details on the used method pcst<sup>++ </sup>and discussion of the results we refer to the linked publication.</p> <p>If any question may arise, you are highly welcome to contact us (see e.g. contact information on the publication).</p>
Series expansions for converting between auxiliary latitudes
<p>This data accompanies the paper</p> <blockquote> <p>C. F. F. Karney,<br><a href="https://doi.org/10.1080/00396265.2023.2217604">On auxiliary latitudes</a>,<br>Survey Review <strong>56</strong>(395), 165-180 (2024).</p> <p>Journal article: <a href="https://doi.org/10.1080/00396265.2023.2217604">doi:10.1080/00396265.2023.2217604</a></p> <p>Preprint: <a href="https://arxiv.org/abs/2212.05818">https://arxiv.org/abs/2212.05818</a></p> </blockquote> <p>Files:</p> <ul> <li><code>auxlat.mac</code>: the Maxima code used to obtain the series expansions. Instructions for using this code are included in the file.</li> <li><code>auxvals40.mac</code>: the 40th-order series in Maxima notation.</li> <li><code>auxvals6.m</code>, <code>auxvals16.m</code>, and <code>auxvals40.m</code>: the 6th-, 16th-, and 40th-order series as Octave/MATLAB code. The 40th-order series are given as floating-point numbers; the others are as exact fractions.</li> <li><code>AuxLatitude.hpp</code>, <code>AuxLatitude.cpp</code>, and <code>example-AuxLatitude.cpp</code>: C++ code implementing the conversions between auxiliary latitudes both using the series expansions and with direct evaluation of the defining equations.</li> </ul>
Series expansions for computing rhumb areas
<p>This data accompanies the paper</p> <blockquote>C. F. F. Karney,<br> <a href="https://arxiv.org/abs/2303.03219">The area of rhumb polygons</a>,<br> Technical Report, SRI International, March 2023.<br> <a href="https://arxiv.org/abs/2303.03219">https://arxiv.org/abs/2303.03219</a></blockquote> <p>Files:</p> <ul> <li><code>rhumbarea.mac</code>: the Maxima code used to obtain the series expansion for the rhumb area. Instructions for using this code are included in the file.</li> <li><code>auxvals40.mac</code>: the 40th-order series for auxiliary latitudes as Maxima code (required by rbumbarea.mac).</li> <li><code>rhumbvals40.mac</code>: the 40th-order series for the rhumb area as Maxima code.</li> <li><code>rhumbvals6.m</code>, <code>rhumbvals16.m</code>, and <code>rhumbvals40.m</code>: the 6th-, 16th-, and 40th-order series as Octave/MATLAB code. The 40th-order series are given as floating-point numbers; the others are as exact fractions.</li> </ul>
Expansion of UBTR012574 Chemical Series Pt. II
<p>Docking analogues of <a href="https://zenodo.org/record/3620775#.XoxqAohKjIV">UBTR012574</a> against the USP5 zinc finger ubiquitin-binding domain (ZnF-UBD) to prioritize compound synthesis.</p>
Expansion of UBTR012574 Chemical Series
<p>Expansion of the chemical series of <a href="https://openlabnotebooks.org/testing-usp5-znf-ubd-analogues-with-a-displacement-assay-and-spr/">UBTR012574 (K<sub>D</sub>= 10 ± 0.1 µM)</a> by docking analogue compounds from the Enamine REAL database and SciFinder against the USP5 zinc finger ubiquitin-binding domain (ZnF-UBD) to prioritize compound ordering. The binding potency of the ordered compounds against USP5 ZnF-UBD was assessed with a surface plasmon resonance (SPR) assay.</p>
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