Auswahl der wissenschaftlichen Literatur zum Thema „T-wise“

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Zeitschriftenartikel zum Thema "T-wise"

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Laue, Reinhard. „t-Wise Balanced Designs“. Electronic Notes in Discrete Mathematics 27 (Oktober 2006): 67. http://dx.doi.org/10.1016/j.endm.2006.08.059.

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Laue, Reinhard. „t-wise balanced designs“. Discrete Applied Mathematics 157, Nr. 9 (Mai 2009): 2136–42. http://dx.doi.org/10.1016/j.dam.2008.06.050.

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Gerbner, Dániel, Dániel T. Nagy, Balázs Patkós und Máté Vizer. „$t$-Wise Berge and $t$-Heavy Hypergraphs“. SIAM Journal on Discrete Mathematics 34, Nr. 3 (Januar 2020): 1813–29. http://dx.doi.org/10.1137/19m1243658.

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McSorley, John P., und Leonard H. Soicher. „Constructing t-designs from t-wise balanced designs“. European Journal of Combinatorics 28, Nr. 2 (Februar 2007): 567–71. http://dx.doi.org/10.1016/j.ejc.2005.02.003.

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Chouinard, Leo G. „Bounding graphical t-wise balanced designs“. Discrete Mathematics 159, Nr. 1-3 (November 1996): 261–63. http://dx.doi.org/10.1016/0012-365x(95)00117-f.

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Gradwohl, Ronen, und Amir Yehudayoff. „t-Wise independence with local dependencies“. Information Processing Letters 106, Nr. 5 (Mai 2008): 208–12. http://dx.doi.org/10.1016/j.ipl.2007.11.010.

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Füredi, Z. „t-expansive andt-wise intersecting hypergraphs“. Graphs and Combinatorics 2, Nr. 1 (Dezember 1986): 67–80. http://dx.doi.org/10.1007/bf01788079.

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Finucane, Hilary, Ron Peled und Yariv Yaari. „A recursive construction of t -wise uniform permutations“. Random Structures & Algorithms 46, Nr. 3 (07.08.2013): 531–40. http://dx.doi.org/10.1002/rsa.20509.

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Dupuy, Trent J., Michael C. Liu, William M. J. Best, Andrew W. Mann, Michael A. Tucker, Zhoujian Zhang, Isabelle Baraffe et al. „WISE J072003.20-084651.2B is a Massive T Dwarf“. Astronomical Journal 158, Nr. 5 (10.10.2019): 174. http://dx.doi.org/10.3847/1538-3881/ab3cd1.

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Braun, Michael. „$$q$$ q -Analogs of $$t$$ t -wise balanced designs from Borel subgroups“. Designs, Codes and Cryptography 78, Nr. 2 (06.09.2014): 383–90. http://dx.doi.org/10.1007/s10623-014-0002-1.

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Dissertationen zum Thema "T-wise"

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Vosta, Diba. „Evaluation of the t-wise Approach for Testing REST APIs“. Thesis, KTH, Skolan för elektroteknik och datavetenskap (EECS), 2020. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-287383.

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A combinatorial explosion can occur when all possible combinations of all input parameters of a system are tested. When the number of input parameters and their possible values increase, the number of tests needed to cover each new case increases exponentially. Combinatorial interaction testing (CIT) is a black-box testing technique used to avoid a combinatorial explosion. CIT finds errors that are triggered by the interactions between parameters. One of the so-called combination strategies that can be used for CIT is t-wise testing. T-wise testing requires at least one test case for each combination of any t parameter values where t is the chosen strength - the number of parameters amongst which the interactions are tested. In this report, CIT with t-wise testing is applied to the testing of REST APIs. The thesis examines how 1-wise, 2-wise and 3-wise interaction testing compare when it comes to detecting injected faults in the code of REST APIs. It also studies the effectiveness of the three t-wise combinations in terms of run-time. The questions were examined through three API endpoints where the 1-wise, 2-wise and 3-wise test suites were generated directly from their OpenAPI specification. These test suites were constructed with parameter values in accordance with boundary value analysis and equivalence class partitioning. To answer the questions of this study, mutation testing was used as a means of injecting faults into the system under test. The mutants were developed specifically for this study as the input validation of the affected APIs was done through code annotations of which there are not many established mutation operators. The results of this study show that 1-wise, 2-wise and 3-wise testing of REST APIs all detect the same injected faults when performing mutation testing on the test suites. Furthermore, it showed that the run-time of the test suites increases significantly as the strength of t-wise testing increases. However, these results are limited to this particular study and cannot be assumed to coincide with other REST APIs. To further strengthen this conclusion for the general case, possible future work is suggested.
En kombinatorisk explosion kan uppstå när all möjliga kombinationer av inputparametrar av ett system testas. Antal testfall som behövs för att täcka alla kombinationer av inputparametrar växer exponentiellt när antalet parametrar och dess möjliga värden ökar. För att undvika en kombinatorisk explosion används kombinatorisk interaktionstestning vilket är en typ av black box testning. Syftet med kombinatorisk interaktionstestning är att hitta de fel som uppstår på grund av interaktioner mellan parametrar. Kombinatorisk interaktionstestning har ett flertal så kallade kombinationsstrategier och den kombinationsstrategi som denna rapport använder är t-wise testning. Kravet med t-wise testning är att skapa åtminstone ett testfall för varje kombination av t parametervärden där t är styrkan mätt i antalet parametrar som interaktioner sinsemellan testas. Denna rapport evaluerar effekterna av t-wise testning som en testningsmetod för REST APIer. Uppsatsen jämför hur väl 1-wise, 2-wise och 3-wise interaktionstestning upptäcker injicerade fel i källkoden av ett REST API. Utöver det undersöks även hur effektiva testsekvenserna är med hänsyn till exekveringstiden. Dessa aspekter undersöktes med hjälp av tre API slutpunkter där testsekvenser för 1-wise, 2-wise och 3-wise skapades direkt utifrån deras OpenAPI specifikationer. Testsekvenskerna som skapades använde gränsvärdeanalys och ekvivalensklasspartitionering för att generera parametervärden. För att kunna besvara frågorna i uppsatsen användes mutationstestning för att injicera fel i källkoden. I det här fallet utvecklades mutanterna specifikt för studien eftersom APIernas inputvalidering bestod av valideringsregler vilka inte har fastställda mutationsoperatorer. Resultaten av studien visade att både 1-wise, 2-wise och 3-wise testning av REST APIer kunde identifiera samma injicerade fel. Därutöver förlängs exekveringstiden av en testsekvens markant när styrkan av t-wise testning ökar. Däremot är dessa resultat begränsade till just detta arbete och kan inte antas stämma för alla fall at t-wise testning av REST APIer. För att stärka slutsatsen av detta arbete och generalisera svaren på frågorna föreslås framtida arbeten som kan göras.
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Kellogg, Kendra, Stanimir Metchev, Paulo A. Miles-Páez und Megan E. Tannock. „A Statistical Survey of Peculiar L and T Dwarfs in SDSS, 2MASS, and WISE“. IOP PUBLISHING LTD, 2017. http://hdl.handle.net/10150/625747.

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We present the final results from a targeted search for brown dwarfs with unusual near-infrared colors. From a positional cross-match of the Sloan Digital Sky Survey (SDSS), 2-Micron All-Sky Survey (2MASS), and Wide-Field Infrared Survey Explorer (WISE) catalogs, we have identified 144 candidate peculiar L and T dwarfs. Spectroscopy confirms that 20 of the objects are peculiar or are candidate binaries. Of the 420 objects in our full sample 9 are young (less than or similar to 200 Myr; 2.1%) and another 8 (1.9%) are unusually red, with no signatures of youth. With a spectroscopic J-K-s color of 2.58 +/- 0.11 mag, one of the new objects, the L6 dwarf 2MASS J03530419 +0418193, is among the reddest field dwarfs currently known and is one of the reddest objects with no signatures of youth known to date. We have also discovered another potentially very-low-gravity object, the L1 dwarf 2MASS J00133470+1109403, and independently identified the young L7 dwarf 2MASS J00440332+0228112, which was first reported by Schneider and collaborators. Our results confirm that signatures of low gravity are no longer discernible in low to moderate resolution spectra of objects older than similar to 200 Myr. The 1.9% of unusually red L dwarfs that do not show other signatures of youth could be slightly older, up to similar to 400 Myr. In this case a red J - K-s color may be more diagnostic of moderate youth than individual spectral features. However, its is also possible that these objects are relatively metal-rich, and thus have enhanced atmospheric dust content.
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Wiss, Kerstin T. [Verfasser]. „Synthetic routes toward functional block copolymers and bioconjugates via RAFT polymerization / Kerstin T. Wiss“. Mainz : Universitätsbibliothek Mainz, 2012. http://d-nb.info/1029362890/34.

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Holt, David T. „Strategically making disciples at First Evangelical Free Church of La Crosse, Wisconsin, through the principles learned in T-Net“. Online full text .pdf document, available to Fuller patrons only, 2002. http://www.tren.com.

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Naňo, Andrej. „Automatické generování testovacích dat informačních systémů“. Master's thesis, Vysoké učení technické v Brně. Fakulta informačních technologií, 2021. http://www.nusl.cz/ntk/nusl-445520.

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ISAGENis a tool for the automatic generation of structurally complex test inputs that imitate real communication in the context of modern information systems . Complex, typically tree-structured data currently represents the standard means of transmitting information between nodes in distributed information systems. Automatic generator ISAGENis founded on the methodology of data-driven testing and uses concrete data from the production environment as the primary characteristic and specification that guides the generation of new similar data for test cases satisfying given combinatorial adequacy criteria. The main contribution of this thesis is a comprehensive proposal of automated data generation techniques together with an implementation, which demonstrates their usage. The created solution enables testers to create more relevant testing data, representing production-like communication in information systems.
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Bücher zum Thema "T-wise"

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Wiersbe, Warren W. Proverbs: God's guidebook to wise living. Colorado Springs, CO: David C. Cook, 2010.

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Reading Ezra 9/10 tu'a-wise: Rethinking biblical interpretation in Oceania. Atlanta: Society of Biblical Literature, 2011.

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Wiersbe, Warren W. Be wise: Discern the difference between man's knowledge and God's wisdom : NT commentary, I Corinthians. 2. Aufl. Colorado Springs, CO: David C. Cook, 2010.

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editor, Raţă Cristian G., Hrsg. The words of the wise are like goads: Engaging Qoheleth in the 21st century. Winona Lake, Indiana: Eisenbrauns, 2013.

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(Canada), National Advisory Board on Science and Technology. Healthy, wealthy and wise : a framework for an integrated federal science and technology strategy : report of the National Advisory Board on Science and Technology =: La santé, la richesse et la sagesse : cadre pour une stratégie fédérale en matière de S-T intégrée : rapport du Conseil consultatif national des sciences et de la technologie. Ottawa, Ont: National Advisory Board on Science and Technology = Conseil consultatif national des sciences et de la technologie, 1995.

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Be wise, my son, and make my heart glad: An exploration of the courtly nature of the book of Proverbs. Berlin: De Gruyter, 2011.

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Buchanan, John, und Andy Buchanan. Wise Guide AT&T Park: The Fan Navigator to San Franscisco (Wise Guide). Wise Guides, 2008.

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Bolton, Martha. Don't Jump to Conclusions Without a Bungee Cord...: And Other Wise Advice from T. Tandem Library, 1999.

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Orange Blossom Boys: The Untold Story of Ervin T Rouse, Chubby Wise and the World's Most Famous Fiddle Tune. Centerstream Publications, 2002.

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Noles, Randy. Fiddler's Curse: The Untold Story of Ervin T. Rouse, Chubby Wise, Johnny Cash, and The Orange Blossom Special (Revised and Updated). Centerstream, 2007.

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Buchteile zum Thema "T-wise"

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Liu, Tianren, Stefano Tessaro und Vinod Vaikuntanathan. „The t-wise Independence of Substitution-Permutation Networks“. In Advances in Cryptology – CRYPTO 2021, 454–83. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-84259-8_16.

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Lee, Sharon X., und Geoffrey J. McLachlan. „Unsupervised Component-Wise EM Learning for Finite Mixtures of Skew t-distributions“. In Advanced Data Mining and Applications, 692–99. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-49586-6_49.

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Ravikumar, Nishant, Ali Gooya, Serkan Çimen, Alejandro F. Frangi und Zeike A. Taylor. „A Multi-resolution T-Mixture Model Approach to Robust Group-Wise Alignment of Shapes“. In Lecture Notes in Computer Science, 142–49. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-46726-9_17.

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Xing, Ye, Zhong Xue, Sarah Englander, Mitchell Schnall und Dinggang Shen. „Improving Parenchyma Segmentation by Simultaneous Estimation of Tissue Property T 1 Map and Group-Wise Registration of Inversion Recovery MR Breast Images“. In Medical Image Computing and Computer-Assisted Intervention – MICCAI 2008, 342–50. Berlin, Heidelberg: Springer Berlin Heidelberg, 2008. http://dx.doi.org/10.1007/978-3-540-85988-8_41.

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Manurangsi, Pasin. „Tight Running Time Lower Bounds for Strong Inapproximability of Maximum k-Coverage, Unique Set Cover and Related Problems (via t-Wise Agreement Testing Theorem)“. In Proceedings of the Fourteenth Annual ACM-SIAM Symposium on Discrete Algorithms, 62–81. Philadelphia, PA: Society for Industrial and Applied Mathematics, 2020. http://dx.doi.org/10.1137/1.9781611975994.5.

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van Geest, Paul, Carlos J. B. de Bourbon de Parme und Sylvester Eijffinger. „The Economy, Nature, and the Meaning of Life After the Coronavirus Crisis“. In The New Common, 75–82. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-65355-2_11.

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Abstract“Christians still regularly tell you that nature is so beautiful and testifies of God’s greatness and goodness. Oh, dear people, nature is downright terrible, nature is one great suffering... What is ‘very good’ about a creation in which the most terrible parasites live in humans and animals...? What is ‘very good’ about a creation in which all organisms are terrorized by parasites, including parasites themselves?” (‘t Hart, Wie God verlaat heeft niets te vrezen. De Schrift betwist, pp. 7–8; 1997). The words by Maarten ‘t Hart seem irrefutable. Now that the coronavirus causes a disease that makes us realize that life is not as malleable in everything as we wish, they would have been almost prophetic if he had added the word “viruses” after “the most terrible parasites.”Long before Maarten ‘t Hart, ancient philosophers refused to accept the idea that creation is only cruel and chaotic.In this chapter, we will discuss how every crisis is an opportunity to continue to grow, either personally or collectively, or to come to a deeper understanding. Bearing this in mind, the question arises as to how we can learn from the present coronavirus crisis. How should society be rearranged? How should we deal with nature of which humankind is a part?
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Goldman, Steven M., und Ross M. Starr. „PAIRWISE, t-WISE, AND PARETO OPTIMALITIES“. In General Equilibrium Models of Monetary Economies, 97–112. Elsevier, 1989. http://dx.doi.org/10.1016/b978-0-12-663970-4.50012-8.

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Hardy, Thomas. „To T. J. Wise (31 December 1916)“. In The Collected Letters of Thomas Hardy, Vol. 8: Further Letters: 1861–1927, herausgegeben von Michael Millgate und Keith Wilson. Oxford University Press, 2012. http://dx.doi.org/10.1093/oseo/instance.00227438.

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„33 Superomedial Pedicle Technique with Inverted-T Closure (Wise Pattern)“. In Bostwick’s Plastic and Reconstructive Breast Surgery, herausgegeben von Glyn E. Jones. Stuttgart: Georg Thieme Verlag, 2020. http://dx.doi.org/10.1055/b-0040-176799.

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„On the maximum size of a hole in an incomplete t-wise balanced design with specified minimum block size“. In Codes and Designs, herausgegeben von K. T. Arasu und Ákoss Seress. Berlin, New York: Walter de Gruyter, 2002. http://dx.doi.org/10.1515/9783110198119.179.

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Konferenzberichte zum Thema "T-wise"

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Oh, Jeho, Paul Gazzillo und Don Batory. „t -wise Coverage by Uniform Sampling“. In SPLC 2019: 23rd International Systems and Software Product Line Conference. New York, NY, USA: ACM, 2019. http://dx.doi.org/10.1145/3336294.3342359.

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Ambainis, Andris, und Joseph Emerson. „Quantum t-designs: t-wise Independence in the Quantum World“. In Twenty-Second Annual IEEE Conference on Computational Complexity. IEEE, 2007. http://dx.doi.org/10.1109/ccc.2007.26.

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Krieter, Sebastian. „Large-scale T-wise interaction sampling using YASA“. In SPLC '20: 24th ACM International Systems and Software Product Line Conference. New York, NY, USA: ACM, 2020. http://dx.doi.org/10.1145/3382025.3414989.

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Vilkomir, Sergiy, Oleksii Starov und Ranjan Bhambroo. „Evaluation of t-wise Approach for Testing Logical Expressions in Software“. In 2013 IEEE 6th International Conference On Software Testing, Verification and Validation Workshops (ICSTW). IEEE, 2013. http://dx.doi.org/10.1109/icstw.2013.83.

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Baranov, Eduard, Axel Legay und Kuldeep S. Meel. „Baital: an adaptive weighted sampling approach for improved t-wise coverage“. In ESEC/FSE '20: 28th ACM Joint European Software Engineering Conference and Symposium on the Foundations of Software Engineering. New York, NY, USA: ACM, 2020. http://dx.doi.org/10.1145/3368089.3409744.

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Calvagna, Andrea, und Emiliano Tramontana. „Incrementally Applicable t-Wise Combinatorial Test Suites for High-Strength Interaction Testing“. In 2013 IEEE 37th International Computer Software and Applications Conference Workshops (COMPSACW). IEEE, 2013. http://dx.doi.org/10.1109/compsacw.2013.25.

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Calvagna, A., A. Gargantini und E. Tramontana. „Building T-wise Combinatorial Interaction Test Suites by Means of Grid Computing“. In 2009 18th IEEE International Workshops on Enabling Technologies: Infrastructures for Collaborative Enterprises (WETICE). IEEE, 2009. http://dx.doi.org/10.1109/wetice.2009.52.

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Calvagna, Andrea, Giuseppe Pappalardo und Emiliano Tramontana. „A Novel Approach to Effective Parallel Computing of t-Wise Covering Arrays“. In 2012 IEEE 21st International Workshop On Enabling Technologies: Infrastructure For Collaborative Enterprises (WETICE). IEEE, 2012. http://dx.doi.org/10.1109/wetice.2012.106.

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Johansen, Martin Fagereng, Øystein Haugen und Franck Fleurey. „An algorithm for generating t-wise covering arrays from large feature models“. In the 16th International Software Product Line Conference. New York, New York, USA: ACM Press, 2012. http://dx.doi.org/10.1145/2362536.2362547.

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Ravikumar, Nishant, Ali Gooya, Alejandro F. Frangi und Zeike A. Taylor. „Robust group-wise rigid registration of point sets using t-mixture model“. In SPIE Medical Imaging, herausgegeben von Martin A. Styner und Elsa D. Angelini. SPIE, 2016. http://dx.doi.org/10.1117/12.2216244.

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