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39 research outcomes, page 1 of 4
  • software . 2019
    Open Source
    Authors:
    Ben Ruijl;
    Publisher: Zenodo
    Project: EC | PertQCD (694712)

    <p>This is the first technical preview release of reFORM. Most of the features described in the <a href="https://readthedocs.org/projects/reform/">manual</a> are fully working, including the C and Python API.</p> <p>The polynomial GCD library is competitive with other c...

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  • software . 2019
    Open Source
    Authors:
    Licht, Johannes De Fine; Kwasniewski, Grzegorz; Hoefler, Torsten;
    Persistent Identifiers
    Publisher: Zenodo
    Project: EC | DAPP (678880)

    <p>Release for artifact evaluation.</p>

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  • software . 2019
    Open Source English
    Authors:
    De Sensi, Daniele; Di Girolamo, Salvatore; Hoefler, Torsten;
    Publisher: Zenodo
    Project: EC | RePhrase (644235), EC | DAPP (678880)

    <p>This repository contains the code of the library to automatically tune the adaptive routing algorithm, used in the paper &quot;Mitigating Network Noise on Dragonfly Networks through Application-Aware Routing&quot; by Daniele De Sensi, Salvatore Di Girolamo and Torste...

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  • software . 2020
    Open Source
    Authors:
    Röger, Gabriele; Helmert, Malte; Seipp, Jendrik; Sievers, Silvan;
    Publisher: Zenodo
    Project: EC | BDE (817639)

    <p>This bundle contains code, data and benchmarks for reproducing all experiments reported in the paper.</p> <p>roeger-et-al-socs2020-fast-downward.tar.gz contains the implementation which is based on Fast Downward 19.12. All Downward Lab scripts used to run the experim...

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  • software . 2017
    Open Source
    Authors:
    McCann, Michael T.;
    Publisher: Zenodo
    Project: EC | GlobalBioIm (692726)

    <p>This code computes, analytically, the X-ray projection of user-specified ellipsoid in 2D or 3D. Such phantoms are useful for testing CT reconstruction algorithms, and we have used them in the following publications:</p> <p>K.H. Jin, M.T. McCann, E. Froustey, M. Unser...

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  • software . 2020
    Open Source English
    Authors:
    Kiselev, Andrei; Achouri, Karim; Martin, Olivier J. F.;
    Persistent Identifiers
    Publisher: Zenodo
    Project: EC | NANOFACTORY (695206)

    <p>We analyze the superposition of Cartesian multipoles to reveal the underlying mechanism of the optical force appearance. In the provided code, we calculate the optical force resulting from the superposition of an electric dipole with a magnetic dipole, as a function ...

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  • software . 2018
    Open Source English
    Authors:
    Eriksson, Salomé; Röger, Gabriele; Helmert, Malte;
    Publisher: Zenodo
    Project: EC | SSX (336939)

    <p>This code package consists of 3 parts:</p> <p>1) Certifying Fast Downward, an extension to Fast Downward which allows generation of proofs for A* with hmax, hm and M&amp;S heuristics.</p> <p>2) Certifying fd-hc-refinement, an extension to the fd-hc-refinement algorit...

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  • software . 2021
    Open Source English
    Authors:
    Florian Pommerening; Thomas Keller; Valentina Halasi; Jendrik Seipp; Silvan Sievers; Malte Helmert;
    Persistent Identifiers
    Publisher: Zenodo
    Project: EC | TAILOR (952215), EC | BDE (817639)

    <p>This bundle contains code, data and benchmarks for reproducing all experiments reported in the paper.</p> <p>pommerening-et-al-icaps2021-code.zip contains the implementation, which is based on Fast Downward 20.06.</p> <p>pommerening-et-al-icaps2021-scripts.tar.gz con...

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  • software . 2020
    Open Source
    Authors:
    Kurlat, Pablo; Scheuer, Florian;
    Publisher: Zenodo
    Project: EC | IneqPol (757721)

    <p>This package contains the MATLAB files to produce Figures 6 and 7 in Kurlat, Pablo and Scheuer, Florian (forthcoming), &quot;Signaling to Experts,&quot; Review of Economics Studies. These figures are based on numerical simulations. No data is required to produce the ...

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  • software . 2020
    Open Source
    Authors:
    Jablonka, Kevin Maik; Giriprasad Melpatti Jothiappan; Shefang Wang; Smit, Berend; Yoo, Brian;
    Persistent Identifiers
    Publisher: Zenodo
    Project: EC | MaGic (666983)

    <p>Multiobjective active learning with tunable accuracy/efficiency tradeoff and clear stopping criterion.</p>

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39 research outcomes, page 1 of 4