Suchergebnisse - (( dynamic code analysis of python programs ) OR ( dynamika code analysis of python programs ))

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  1. 1

    TESTING THE DYNAMIC EXECUTION OF PYTHON PROGRAM CODE DURING THE CERTIFICATION TESTING (DEVELOPMENT) STAGE IN THE CERTIFICATION SYSTEM OF THE MINISTRY OF DEFENSE OF RUSSIA von V.V. Samarov

    ISSN: 2307-4205
    Veröffentlicht: Penza State University Publishing House 01.06.2023
    “… When checking applications developed in the Python language for compliance of their code with the requirements of the governing document "Protection against unauthorized access to information. Part 1 …”
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  2. 2

    Evaluating test quality of Python libraries for IoT applications at the network edge von Chen, Zhifei, Jia, Chiheng, Chen, Lin

    ISSN: 1022-0038, 1572-8196
    Veröffentlicht: New York Springer US 01.10.2024
    Veröffentlicht in Wireless networks (01.10.2024)
    “… Due to the difficulty of static program analysis on dynamic languages, the quality of test code in Python libraries for IoT development faces a serious threat, which in turn affects the performance of IoT applications …”
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  3. 3

    Mining Python fix patterns via analyzing fine-grained source code changes von Yang, Yilin, He, Tianxing, Feng, Yang, Liu, Shaoying, Xu, Baowen

    ISSN: 1382-3256, 1573-7616
    Veröffentlicht: New York Springer US 01.03.2022
    “… ); yet the fix patterns proposed by these studies can not be directly applied to improve Python programs because of syntactic incompatibilities and lack of analysis of dynamic features …”
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  4. 4

    MASSpy: Building, simulating, and visualizing dynamic biological models in Python using mass action kinetics von Haiman, Zachary B., Zielinski, Daniel C., Koike, Yuko, Yurkovich, James T., Palsson, Bernhard O.

    ISSN: 1553-7358, 1553-734X, 1553-7358
    Veröffentlicht: United States Public Library of Science 28.01.2021
    Veröffentlicht in PLoS computational biology (28.01.2021)
    “… MASSpy adds dynamic modeling tools to the COnstraint-Based Reconstruction and Analysis Python (COBRApy …”
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  5. 5

    Introduction to Python Dynamic Diffraction Toolkit ( PyDDT ): structural refinement of single crystals via X-ray phase measurements von Penacchio, Rafaela F. S., Estradiote, Maurício B., Remédios, Cláudio M. R., Calligaris, Guilherme A., Torikachvili, Milton S., Kycia, Stefan W., Morelhão, Sérgio L.

    ISSN: 1600-5767, 0021-8898, 1600-5767
    Veröffentlicht: Oxford Blackwell Publishing Ltd 01.10.2023
    Veröffentlicht in Journal of applied crystallography (01.10.2023)
    “… PyDDT is a free Python package of computer codes for exploiting X-ray dynamic multiple diffraction in single crystals …”
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  6. 6

    SciPy 1.0: fundamental algorithms for scientific computing in Python von Virtanen, Pauli, Gommers, Ralf, Oliphant, Travis E., Haberland, Matt, Reddy, Tyler, Cournapeau, David, Burovski, Evgeni, Peterson, Pearu, Weckesser, Warren, Bright, Jonathan, van der Walt, Stéfan J., Brett, Matthew, Wilson, Joshua, Millman, K. Jarrod, Mayorov, Nikolay, Nelson, Andrew R. J., Jones, Eric, Kern, Robert, Larson, Eric, Carey, C J, Polat, İlhan, Feng, Yu, Moore, Eric W., VanderPlas, Jake, Laxalde, Denis, Perktold, Josef, Cimrman, Robert, Henriksen, Ian, Quintero, E. A., Harris, Charles R., Archibald, Anne M., Ribeiro, Antônio H., Pedregosa, Fabian, van Mulbregt, Paul

    ISSN: 1548-7091, 1548-7105, 1548-7105
    Veröffentlicht: New York Nature Publishing Group US 01.03.2020
    Veröffentlicht in Nature methods (01.03.2020)
    “… Since its initial release in 2001, SciPy has become a de facto standard for leveraging scientific algorithms in Python, with over 600 unique code contributors, thousands of dependent packages …”
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  7. 7

    Generative Type Inference for Python von Peng, Yun, Wang, Chaozheng, Wang, Wenxuan, Gao, Cuiyun, Lyu, Michael R.

    ISSN: 2643-1572
    Veröffentlicht: IEEE 11.09.2023
    “… However, its dynamic type system can lead to potential type errors, leading researchers to explore automatic type inference approaches for Python programs …”
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  8. 8

    i-PI: A Python interface for ab initio path integral molecular dynamics simulations von Ceriotti, Michele, More, Joshua, Manolopoulos, David E.

    ISSN: 0010-4655, 1879-2944
    Veröffentlicht: Elsevier B.V 01.03.2014
    Veröffentlicht in Computer physics communications (01.03.2014)
    “… Here we describe i-PI, an interface written in Python that has been designed to minimise the effort required to bring state-of-the-art path integral techniques to an electronic structure program …”
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  9. 9

    SIMA: Python software for analysis of dynamic fluorescence imaging data von Kaifosh, Patrick, Zaremba, Jeffrey D., Danielson, Nathan B., Losonczy, Attila

    ISSN: 1662-5196, 1662-5196
    Veröffentlicht: Switzerland Frontiers Research Foundation 23.09.2014
    Veröffentlicht in Frontiers in neuroinformatics (23.09.2014)
    “… However, analysis of dynamic fluorescence imaging data remains burdensome, in part due to the shortage of available software tools …”
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  10. 10

    Dynamic Slicing of Python Programs von Zhifei Chen, Lin Chen, Yuming Zhou, Zhaogui Xu, Chu, William C., Baowen Xu

    ISSN: 0730-3157
    Veröffentlicht: IEEE 01.07.2014
    “… In this paper, we propose an approach of dynamic slicing for Python programs which combines static analysis and dynamic tracing of the Python byte code …”
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    Tagungsbericht Journal Article
  11. 11

    Domain Knowledge Matters: Improving Prompts with Fix Templates for Repairing Python Type Errors von Peng, Yun, Gao, Shuzheng, Gao, Cuiyun, Huo, Yintong, Lyu, Michael R.

    ISSN: 1558-1225
    Veröffentlicht: ACM 14.04.2024
    “… Although the dynamic type system of Python facilitates the developers in writing Python programs, it also brings type errors at runtime which are prevalent yet not easy to fix …”
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  12. 12

    DefAP: A Python code for the analysis of point defects in crystalline solids von Neilson, William D., Murphy, Samuel T.

    ISSN: 0927-0256, 1879-0801
    Veröffentlicht: Elsevier B.V 01.07.2022
    Veröffentlicht in Computational materials science (01.07.2022)
    “… into a material’s defect chemistry, it is essential to link the energies calculated to thermodynamic variables that fully describe its operating conditions …”
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  13. 13

    ACPYPE - AnteChamber PYthon Parser interfacE von Sousa da Silva, Alan W, Vranken, Wim F

    ISSN: 1756-0500, 1756-0500
    Veröffentlicht: London BioMed Central 23.07.2012
    Veröffentlicht in BMC research notes (23.07.2012)
    “… topologies and parameters for a variety of molecular dynamics programmes like GROMACS, CHARMM and CNS …”
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  14. 14

    mdciao: Accessible Analysis and Visualization of Molecular Dynamics Simulation Data von Pérez-Hernández, Guillermo, Hildebrand, Peter W.

    ISSN: 1553-7358, 1553-734X, 1553-7358
    Veröffentlicht: United States Public Library of Science 21.04.2025
    Veröffentlicht in PLoS computational biology (21.04.2025)
    “… ) for easy, one-shot analysis and representation of molecular dynamics (MD) simulation data. Building upon the widely used concept of residue-residue contact-frequencies …”
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  15. 15

    pyIAST: Ideal adsorbed solution theory (IAST) Python package von Simon, Cory M., Smit, Berend, Haranczyk, Maciej

    ISSN: 0010-4655, 1879-2944
    Veröffentlicht: Netherlands Elsevier B.V 01.03.2016
    Veröffentlicht in Computer physics communications (01.03.2016)
    “… Ideal adsorbed solution theory (IAST) is a widely-used thermodynamic framework to readily predict mixed-gas adsorption isotherms from a set of pure-component adsorption isotherms …”
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  16. 16

    Visual dynamics: a WEB application for molecular dynamics simulation using GROMACS von Vieira, Ivo Henrique Provensi, Botelho, Eduardo Buganemi, de Souza Gomes, Thales Junior, Kist, Roger, Caceres, Rafael Andrade, Zanchi, Fernando Berton

    ISSN: 1471-2105, 1471-2105
    Veröffentlicht: London BioMed Central 22.03.2023
    Veröffentlicht in BMC bioinformatics (22.03.2023)
    “… Background The molecular dynamics is an approach to obtain kinetic and thermodynamic characteristics of biomolecular structures …”
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  17. 17

    Tensorpac: An open-source Python toolbox for tensor-based phase-amplitude coupling measurement in electrophysiological brain signals von Combrisson, Etienne, Nest, Timothy, Brovelli, Andrea, Ince, Robin A. A., Soto, Juan L. P., Guillot, Aymeric, Jerbi, Karim

    ISSN: 1553-7358, 1553-734X, 1553-7358
    Veröffentlicht: United States Public Library of Science 29.10.2020
    Veröffentlicht in PLoS computational biology (29.10.2020)
    “… Current research in the field is not only hampered by the absence of a gold standard for PAC analysis, but also by the computational costs of running exhaustive computations on large and high …”
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  18. 18

    Dynamic Generation of Python Bindings for HPC Kernels von Zhu, Steven, AlAwar, Nader, Erez, Mattan, Gligoric, Milos

    ISSN: 2643-1572
    Veröffentlicht: IEEE 01.11.2021
    “… A recent trend among scientists-prototyping applications in dynamic languages such as Python-created a gap between the applications and existing HPKs …”
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    Detecting Memory Errors in Python Native Code by Tracking Object Lifecycle with Reference Count von Ma, Xutong, Yan, Jiwei, Zhang, Hao, Yan, Jun, Zhang, Jian

    ISSN: 2643-1572
    Veröffentlicht: IEEE 11.09.2023
    “… Third-party Python modules are usually implemented as binary extensions by using native code (C/C++ …”
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  20. 20

    PyISOLVER-A Fast Python OOP Implementation of LRDFIT Model von Yang, Fanghao, Menard, Jonathan E.

    ISSN: 0093-3813, 1939-9375
    Veröffentlicht: New York IEEE 01.06.2020
    Veröffentlicht in IEEE transactions on plasma science (01.06.2020)
    “… on the commercial software license. In this article, the original procedural program was ported from its commercial platform to an open-source Python platform and refactored into the object …”
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