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Статті в журналах з теми "Réévaluation (mathématiques)"
Nwogu, E. C., and Chinonso Okoro. "Adjustment of Nigeria population censuses using mathematical methods." Canadian Studies in Population 44, no. 3-4 (December 13, 2017): 149. http://dx.doi.org/10.25336/p6vs5k.
Повний текст джерелаAlves, Pedro M. S. "Kant en tant que Philosophe de la Science de la Nature." Revista de Filosofia Moderna e Contemporânea 8, no. 2 (December 31, 2020): 15–33. http://dx.doi.org/10.26512/rfmc.v8i2.35850.
Повний текст джерелаBelhoste, Bruno. "Pour une réévaluation du rôle de l'enseignement dans l'histoire des mathématiques." Revue d'histoire des mathématiques, November 6, 2018. http://dx.doi.org/10.24033/rhm.77.
Повний текст джерелаHammerman, Robin, and Anthony Pennino. "The Iconography of Ada Lovelace in Fictional Worlds." Imaginaires de l'IA 22 (2024). http://dx.doi.org/10.4000/11tfg.
Повний текст джерелаSchubring, Gert. "Production mathématique, enseignement et communication Remarques sur la note de Bruno Belhoste, “Pour une réévaluation du rôle de l'enseignement dans l'histoire des mathématiques” parue dans la RHM 4 (1998), p. 289–304." Revue d'histoire des mathématiques, November 6, 2018. http://dx.doi.org/10.24033/rhm.116.
Повний текст джерелаДисертації з теми "Réévaluation (mathématiques)"
Gaide, Maxime. "Modélisation et rejeu basés sur des règles." Electronic Thesis or Diss., Chasseneuil-du-Poitou, Ecole nationale supérieure de mécanique et d'aérotechnique, 2024. http://www.theses.fr/2024ESMA0026.
Повний текст джерелаDesigning a complex object is a tedious process involving repeated cycles of trial and error. In order to alleviate such a difficulty in the designing process, current parametric modelling systems offer some reevaluation mechanism sallowing a user to rebuild an object based on the editing of its parameters. However, such a process requires either processing an entire mesh in order to detect topological changes, which is computationally expensive, or hard-coding the changes in the modelling operations, which is computationally efficient but increases the risks to introduce detection errors. To address these limitations, our works focus on the development of a rule-based modelling system dedicated to the reevaluation of modelling processes. In particular, this system allows the addition, deletion and reordering of the operations defining those processes. We consider operations formalised with Jerboa’s graph transformation rules. Our first contribution is the syntactic analysis of the operations allowing for the detection of topological changes (creation, split, merge, and so on). These analyses are statically performed on rules, independently of the object onto which they are being applied. Thus, topological changes can be automatically detected and tracked. In some defined cases, a localised analysis performed within the object can assert whether the event has occurred or not. Our second contribution makes use of our topological changes detection approach in order to offer a reevaluation mechanism. Considering that a modelling process is a record of operations sequentially applied on specific topological entities, reevaluating a modelling process first requires solving the long-standing problem of persistently naming topological entities in a geometric model. To achieve this goal, we offer to reconstitute the histories of topological entities referenced within a modelling process. Each entity can be identified through its history, which is unique. With this mechanism, we reference topological entities in a robust way throughout reevaluation. Our third contribution aims to extend our reevaluation mechanism to include scripts of rules which can be used to create more complex operations. The Jerboa script language makes it possible to create such scripts with usual control structures such as alternatives and iterations. We extend our reevaluation mechanism by including these control structures, hence, enabling the user with greater versatility in modelling and managing complex operations