Academic literature on the topic 'Multidomaines'
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Journal articles on the topic "Multidomaines"
Maleki, Mohsen, and Eliot Fried. "Multidomain and ground state configurations of two-phase vesicles." Journal of The Royal Society Interface 10, no. 83 (June 6, 2013): 20130112. http://dx.doi.org/10.1098/rsif.2013.0112.
Full textHa, Minho, Cheolung Cheong, Hanshin Seol, Bu-Geun Paik, Min-Jae Kim, and Young-Rae Jung. "Development of Efficient and Accurate Parallel Computation Algorithm Using Moving Overset Grids on Background Multi-Domains for Complex Two-Phase Flows." Applied Sciences 8, no. 10 (October 16, 2018): 1937. http://dx.doi.org/10.3390/app8101937.
Full textGuo, Lian Shui, Jun Huang, Andres Tavor, and John E. Renaud. "Multidomain Topology Optimization for Crashworthiness Based on Hybrid Cellular Automata." Key Engineering Materials 486 (July 2011): 250–53. http://dx.doi.org/10.4028/www.scientific.net/kem.486.250.
Full textde Oliveira, Amanda C. P., Rafael M. Ferreira, Maria Inês T. Ferro, Jesus A. Ferro, Caio Zamuner, Henrique Ferreira, and Alessandro M. Varani. "XAC4296 Is a Multifunctional and Exclusive Xanthomonadaceae Gene Containing a Fusion of Lytic Transglycosylase and Epimerase Domains." Microorganisms 10, no. 5 (May 11, 2022): 1008. http://dx.doi.org/10.3390/microorganisms10051008.
Full textValk, Vincent, Wieger Eeuwema, Fean D. Sarian, Rachel M. van der Kaaij, and Lubbert Dijkhuizen. "Degradation of Granular Starch by the Bacterium Microbacterium aurum Strain B8.A Involves a Modular α-Amylase Enzyme System with FNIII and CBM25 Domains." Applied and Environmental Microbiology 81, no. 19 (July 17, 2015): 6610–20. http://dx.doi.org/10.1128/aem.01029-15.
Full textZhou, Jianuan, Haibao Zhang, Jien Wu, Qiongguang Liu, Pinggen Xi, Jasmine Lee, Jinling Liao, Zide Jiang, and Lian-Hui Zhang. "A Novel Multidomain Polyketide Synthase Is Essential for Zeamine Production and the Virulence of Dickeya zeae." Molecular Plant-Microbe Interactions® 24, no. 10 (October 2011): 1156–64. http://dx.doi.org/10.1094/mpmi-04-11-0087.
Full textVázquez-Gómez, José. "Multidomain security." Computers & Security 13, no. 2 (April 1994): 161–84. http://dx.doi.org/10.1016/0167-4048(94)90065-5.
Full textHertig, Samuel, Thomas D. Goddard, Graham T. Johnson, and Thomas E. Ferrin. "Multidomain Assembler (MDA) Generates Models of Large Multidomain Proteins." Biophysical Journal 108, no. 9 (May 2015): 2097–102. http://dx.doi.org/10.1016/j.bpj.2015.03.051.
Full textAdjeroh, Donald, Yue Jiang, Bing-Hua Jiang, and Jie Lin. "Network Analysis of Circular Permutations in Multidomain Proteins Reveals Functional Linkages for Uncharacterized Proteins." Cancer Informatics 13s5 (January 2014): CIN.S14059. http://dx.doi.org/10.4137/cin.s14059.
Full textKlymko, Victor, Andriy Nadtochiy, David Sedorook, and Igor Ostrovskii. "Multidomain ferroelectric actuator." Journal of the Acoustical Society of America 128, no. 4 (October 2010): 2339. http://dx.doi.org/10.1121/1.3508279.
Full textDissertations / Theses on the topic "Multidomaines"
Léger, Corentin. "Conception de protéines artificielles multidomaines." Thesis, Université Paris-Saclay (ComUE), 2018. http://www.theses.fr/2018SACLS384.
Full textThe creation of new protein functions based on recognition and molecular assembly is not only a major goal in biotechnology but is also a means to understand the relation structure/function of proteins involved in interaction processes. Today, libraries of artificial proteins obtained by engineering can be a source of proteins with recognition properties similar to the properties of antibodies.The team Protein Engineering and Modeling has thus created a library of proteins with structural repeats called the “alphaReps”. The alphaReps present remarkable properties in terms of production and stability. Unlike most of the antibodies and their derivatives, they can even be expressed and functional in the cytoplasm of eukaryotic cells. Such objects can therefore be used as building bricks in modular engineering. The construction of new optimized recognition functions both in specificity and in affinity can then be possible by rearranging or duplicating these elementary bricks.The first part of this thesis project consisted in the construction and study of the biophysical properties of bidomain proteins based on alphaRep in order to have a better understanding of the behaviour of such constructions. Beside the fundamental aspect of this question, this study will give the “rules” to modulate the interactions between these proteins in a controlled way. The results show that it is possible to create new functions such as avidity, cooperativity, conformational change, simply by adding a linker between two alphaReps.In a second step, the goal was to develop, with the bidomain proteins previously studied, new biosensors based on the FRET (Förster Resonance Energy Transfer) which can be used in vivo and in vitro. This second part presents two biosensors with limits of detection in the nanomolar range. Since the alphaReps used in these constructions can be changed depending on the chosen target, it is a proof of concept which can be adapted to any desired target.Finally, the third part of this thesis focused on the development of genetically codable biosensors. These biosensors have the particular advantage of being usable directly after production and therefore no longer require a chemical coupling step. The results show that the development of such biosensors is worth considering but an optimization is still required in order to improve their specificity, their stability and their detection capacity
MARTIN, Vincent. "Simulations multidomaines des écoulements en milieu poreux." Phd thesis, Université Paris Dauphine - Paris IX, 2004. http://tel.archives-ouvertes.fr/tel-00007142.
Full textMartin, Vincent. "Simulations multidomaines des écoulements en milieu poreux." Paris 9, 2004. https://portail.bu.dauphine.fr/fileviewer/index.php?doc=2004PA090006.
Full textThis thesis is mainly concerned with the multidomain simulations of flow in porous media. Three different themes are considered. First, we study a domain decomposition method with non-matching meshes using Robin type interface conditions, for the mixed finite elements. Second, this method is implemented in parallel using the parallel system OcamlP3l, written in Ocaml by computer scientists. In OcamlP3l, the user develops and debugs sequentially, and obtains the parallel code with a mere recompilation. A realistic 3D simulation is given to validate the procedure. Finally, we present a new model for flow in a porous medium containing large fractures that may have very large and/or very small permeabilities. In this model, the fractures are treated as interfaces between subdomains. Existence and uniqueness of the solution is proved and an error estimate is obtained. Some numerical experiments show the quality of the results
Batkam, Hemo Serge. "Thermique multidomaines en simulation numérique du remplissage 3D." Paris, ENMP, 2002. http://www.theses.fr/2002ENMP0001.
Full textSolving the thermal problem is a key point for the numerical simulation of injection molding. The main causes of the numerical difficulties encountered by classical Galerkin techniques are the specific characters of molten polymers: high energy dissipation, low thermal conductivity, thermal shocks at the mold wall, thermal dependence of rheology. In this contribution, we have developed a space-time finite element method to solve the heat equation. A discontinuous Galerkin technique using P0/P0+ elements is proposed for the steady problem. The transient problem is treated with a discontinuous high order finite element in time method. The so-built scheme is local and easy to implement. It reveals good properties of stability, robustness and speed. Its appears to be efficient both for convection dominant and diffusion dominant equations, and is therefore suitable for injection molding process. Another difficulty when modelling the thermal exchanges in the polymer is to define accurate boundary conditions at the cavity frontier. We have investigated a numerical scheme which allows to couple the computations in the polymer with thermal computations in domains surrounding the cavity (multidomain approach). This scheme does not require coincident meshes between the domains. A specific processing at the interfaces guarantees natural thermal exchanges between two domains in contact, with no regard of any particular heat exchange coefficient specified at the interface. All the proposed methods have been validated through analytic examples, then integrated to the thermal solver of REM3D® software. Several examples of complex 3D mold filling, including thermomechanical coupling in the cavity, and possibly thermal coupling in the mold or in inserts (overmolding injection process) are given
Laduguie, Sylvain. "Etude et réalisation d'un système de programmation logique par contraintes abstraites multidomaines." Besançon, 1993. http://www.theses.fr/1993BESA2045.
Full textCHAN, HUAH YONG. "Gestion auto-adaptative et administration de l'allocation des ressources dans les systemes repartis a objets multidomaines." Besançon, 1999. http://www.theses.fr/1999BESA2052.
Full textVukadinovic, Nicolas. "Dynamique de spin dans les films minces de grenat ferrimagnétique mono et multidomaines résonance de parois magnétiques /." Grenoble 2 : ANRT, 1988. http://catalogue.bnf.fr/ark:/12148/cb37619119f.
Full textVukadinovic, Nicolas. "Dynamique de spin dans les films minces de grenat ferrimagnetique mono et multidomaines : resonance de parois magnetiques." Paris 6, 1988. http://www.theses.fr/1988PA066597.
Full textSonke, Tabuguia Luc. "Étude numérique des équations de Navier-Stokes en milieux multiplement connexes, en formulation vitesse-tourbillon, par une approche multidomaines." Paris 11, 1989. http://www.theses.fr/1989PA112280.
Full textThis work can be divided into three parts. In the first part (chapters 1 and 2), we study the driven cavity problem with the Navier-Stokes equations in velocity-vorticity formulation. A symmetrization technique for algorithmic solution of non-symmetric linear problems is introduced in chapter 2. This technique is applied to the calculation of solution of a linearized form of vorticity equation. In the second part, we develop domain decomposition methods for symmetric problems (chapter 3) and non-symmetric problems (chapter 4). An algorithmic approach is developed in both cases. We use Steklov-Poincaré operator for the mathematical analysis of coordination problem. The discrete version of the coordination problem is studied through the Schur complement matrix. In the third part (chapter 5), we apply techniques and methods developed in previous chapters to the study of fluid motion in multiply connected regions. We conclude this work in chapter 6, by a study of parallel extensions of our algorithms, with a view to their utilization on multiprocessors computers
Fonseca, Mauro Sergio Pereira. "Architectures basées sur les politiques et SLAs pour la gestion et le contrôle des services et réseaux multidomaines émergents." Paris 6, 2003. http://www.theses.fr/2003PA066254.
Full textBooks on the topic "Multidomaines"
Landriani, G. Sacchi. A multidomain spectral collocation method for the Stokes problem. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1989.
Find full textLandriani, G. Sacchi. A multidomain spectral collocation method for the Stokes problem. Hampton, Va: Institute for Computer Applications in Science and Engineering, 1989.
Find full textLandriani, G. Sacchi. A multidomain spectral collocation method for the Stokes problem. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1989.
Find full textKopriva, David A. A conservative staggered-grid Chebyshev multidomain method for compressible flows. Hampton, Va: Langley Research Center, 1995.
Find full textKopriva, David A. Spectral solution of the viscous blunt body problem. II: Multidomain approximation. Hampton, Va: Langley Research Center, 1994.
Find full textKopriva, David A. A conservative staggered-grid Chebyshev multidomain method for compressible flows. II: A semi-structured method. Hampton, Va: Institute for Computer Applications in Science and Engineering, 1996.
Find full textUnesco Workshop on Structure and Function of Proteins (1984 Budapest, Hungary). Multidomain proteins: Proceedings of the Unesco Workshop on Structure and Function of Proteins, Budapest, September 13-15, 1984. Budapest: Akadémiai Kiadó, 1986.
Find full textG, Hardie D., and Coggins J. R, eds. Multidomain proteins: Structure andevolution. Oxford: Elsevier, 1986.
Find full textG, Hardie D., and Coggins J. R, eds. Multidomain proteins: Structure and evolution. Amsterdam: Elsevier, 1986.
Find full textAligning Roles and Missions for Future Multidomain Warfare. RAND Corporation, 2021. http://dx.doi.org/10.7249/rr-a160-1.
Full textBook chapters on the topic "Multidomaines"
Weik, Martin H. "multidomain network." In Computer Science and Communications Dictionary, 1052. Boston, MA: Springer US, 2000. http://dx.doi.org/10.1007/1-4020-0613-6_11875.
Full textCoupez, Thierry, Hugues Digonnet, Elie Hachem, Patrice Laure, Luisa Silva, and Rudy Valette. "Multidomain Finite Element Computations." In Arbitrary Lagrangian-Eulerian and Fluid-Structure Interaction, 221–90. Hoboken, NJ USA: John Wiley & Sons, Inc., 2013. http://dx.doi.org/10.1002/9781118557884.ch5.
Full textFrattolillo, Franco, and Salvatore D’Onofrio. "Exploiting Multidomain Non Routable Networks." In Parallel and Distributed Processing and Applications, 696–709. Berlin, Heidelberg: Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/11946441_64.
Full textHawkins, Alastair R., and Heather K. Lamb. "The molecular biology of multidomain proteins." In EJB Reviews, 245–56. Berlin, Heidelberg: Springer Berlin Heidelberg, 1995. http://dx.doi.org/10.1007/978-3-642-85252-7_17.
Full textHwang, Peter, Dawid Kurzyniec, and Vaidy Sunderam. "Heterogeneous Parallel Computing Across Multidomain Clusters." In Recent Advances in Parallel Virtual Machine and Message Passing Interface, 337–44. Berlin, Heidelberg: Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-540-30218-6_47.
Full textXue, Jing, David S. Burz, and Alexander Shekhtman. "Segmental Labeling to Study Multidomain Proteins." In Advances in Experimental Medicine and Biology, 17–33. Dordrecht: Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-94-007-4954-2_2.
Full textFrattolillo, Franco. "Running PVM Applications on Multidomain Clusters." In Recent Advances in Parallel Virtual Machine and Message Passing Interface, 166–73. Berlin, Heidelberg: Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/11846802_28.
Full textPathak, Samridhi, Ricka Gauba, Sarath Chandra Dantu, Dhriti Sheth, and Avinash Kale. "Formin: The Multidomain Elongator of Actin Polymer." In Actin Polymerization in Apicomplexan, 29–38. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-7450-0_3.
Full textGastaldi, Fabio. "A Multidomain Decomposition for the Transport Equation." In Variational and Free Boundary Problems, 87–109. New York, NY: Springer New York, 1993. http://dx.doi.org/10.1007/978-1-4613-8357-4_7.
Full textPetrone, Mario, and Roberto Zarrelli. "Utilizing PVM in a Multidomain Clusters Environment." In Recent Advances in Parallel Virtual Machine and Message Passing Interface, 241–49. Berlin, Heidelberg: Springer Berlin Heidelberg, 2005. http://dx.doi.org/10.1007/11557265_33.
Full textConference papers on the topic "Multidomaines"
Vázquez-Gómez, José de J. "Modelling multidomain security." In Proceedings on the 1992-1993 workshop. New York, New York, USA: ACM Press, 1993. http://dx.doi.org/10.1145/283751.283842.
Full textGuo, Jianxin, Sheng Li Wu, Zhenjun Ma, and Xinmin Huang. "Multidomain STN LCDs." In Liquid Crystals, edited by Jolanta Rutkowska, Stanislaw J. Klosowicz, Jerzy Zielinski, and Jozef Zmija. SPIE, 1998. http://dx.doi.org/10.1117/12.300036.
Full textPollehn, Herbert K., and Jack S. Ahearn. "Multidomain smart sensors." In AeroSense '99, edited by Bjorn F. Andresen and Marija Strojnik. SPIE, 1999. http://dx.doi.org/10.1117/12.354544.
Full textLi, Bingcheng. "Network dynamics based multidomain sensor data processing and fusion for multidomain operations." In Artificial Intelligence and Machine Learning for Multi-Domain Operations Applications II, edited by Tien Pham, Latasha Solomon, and Katie Rainey. SPIE, 2020. http://dx.doi.org/10.1117/12.2559990.
Full textKochan, Matthew J., and Timothy A. Farrell. "Multidomain operations science and technology." In Defense and Security, edited by Dawn A. Trevisani and Alex F. Sisti. SPIE, 2004. http://dx.doi.org/10.1117/12.548264.
Full textPickavet, Mario, Pieter Audenaert, Jeroen Vanhaverbeke, Dimitri Staessens, Didier Colle, and Piet Demeester. "Optimizing Reliable Multidomain Optical Routing." In Proceedings of 2006 8th International Conference on Transparent Optical Networks. IEEE, 2006. http://dx.doi.org/10.1109/icton.2006.248385.
Full textSorokin, A. A., I. M. Smurov, and D. P. Kirianov. "TAGGING AND PARSING OF MULTIDOMAIN COLLECTIONS." In International Conference on Computational Linguistics and Intellectual Technologies "Dialogue". Russian State University for the Humanities, 2020. http://dx.doi.org/10.28995/2075-7182-2020-19-670-683.
Full textKadambari, Sai Kiran, and Sundeep Prabhakar Chepuri. "Learning Product Graphs from Multidomain Signals." In ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP). IEEE, 2020. http://dx.doi.org/10.1109/icassp40776.2020.9054679.
Full textGarberoglio, Leonardo, Patricio Moreno, Ignacio Mas, and Juan I. Giribet. "Autonomous Vehicles for Outdoor Multidomain Mapping." In 2018 IEEE Biennial Congress of Argentina (ARGENCON). IEEE, 2018. http://dx.doi.org/10.1109/argencon.2018.8646054.
Full textKobayashi, Shunsuke, and Yasufumi Iimura. "Multidomain TN-LCD fabricated by photoalignment." In Electronic Imaging '97, edited by Ranganathan Shashidhar. SPIE, 1997. http://dx.doi.org/10.1117/12.271401.
Full textReports on the topic "Multidomaines"
Saalman, Lora. Multidomain Deterrence and Strategic Stability in China. Stockholm International Peace Research Institute, January 2022. http://dx.doi.org/10.55163/fyxq3853.
Full textNielsen, Steen A., and Jan S. Hesthaven. A Multidomain Pseudospectral Formulation for the Simulation of Elastic Wave Scattering. Fort Belvoir, VA: Defense Technical Information Center, March 2001. http://dx.doi.org/10.21236/ada462237.
Full textGreene, Geoffrey. Multidomain Assembly of Nuclear Estrogen Receptors: Structural Insights into ER-Positive Breast Cancer Therapeutics. Fort Belvoir, VA: Defense Technical Information Center, April 2012. http://dx.doi.org/10.21236/ada562255.
Full textPerdigão, Rui A. P. Earth System Dynamic Intelligence - ESDI. Meteoceanics, April 2021. http://dx.doi.org/10.46337/esdi.210414.
Full textBarash, Itamar, and Robert Rhoads. Translational Mechanisms Governing Milk Protein Levels and Composition. United States Department of Agriculture, 2006. http://dx.doi.org/10.32747/2006.7696526.bard.
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