Littérature scientifique sur le sujet « Method accuracy »

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Articles de revues sur le sujet "Method accuracy"

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TAKIZAWA, Kenji, Shohei Asada, Austin BUSCHER, and Tayfun TEZDUYAR. "1G26 Aortic-Valve Simulation with a High-Accuracy Method." Proceedings of the Bioengineering Conference Annual Meeting of BED/JSME 2014.26 (2014): 229–30. http://dx.doi.org/10.1299/jsmebio.2014.26.229.

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Mahariq, I., H. I. Tarman, and M. Kuzuoğlu. "On the Accuracy of Spectral Element Method in Electromagnetic Scattering Problems." International Journal of Computer Theory and Engineering 6, no. 6 (2014): 495–99. http://dx.doi.org/10.7763/ijcte.2014.v6.916.

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Haydock, Roger, and Ronald L. Te. "Accuracy of the recursion method." Physical Review B 49, no. 16 (1994): 10845–50. http://dx.doi.org/10.1103/physrevb.49.10845.

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Kiełkiewicz, M. "Accuracy of the moments method." Annals of Nuclear Energy 21, no. 3 (1994): 189–93. http://dx.doi.org/10.1016/0306-4549(94)90061-2.

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GUNZBURGER, M., and A. LABOVSKY. "HIGH ACCURACY METHOD FOR TURBULENT FLOW PROBLEMS." Mathematical Models and Methods in Applied Sciences 22, no. 06 (2012): 1250005. http://dx.doi.org/10.1142/s0218202512500054.

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We present a method of high-order temporal and spatial accuracy for flow problems with high Reynolds number. The method presented is stable, computationally cheap and gives an accurate approximation to the quantities sought. The direct numerical simulation of turbulent flows is computationally expensive or not even feasible. Hence, the method employs turbulence modeling. The two key ingredients are the temporal deferred correction, combined with the family of Approximate Deconvolution models, which allows for arbitrarily high order of accuracy in both spatial and temporal variables. We prove s
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Beydoun, Wafik B., and Timothy H. Keho. "The paraxial ray method." GEOPHYSICS 52, no. 12 (1987): 1639–53. http://dx.doi.org/10.1190/1.1442281.

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The paraxial ray method is an economical way of computing approximate Green’s functions in heterogeneous media. The method uses information from the standard dynamic ray‐tracing method to extrapolate the seismic wave field at receivers in the neighborhood of a ray so that two‐point ray tracing is not required. Applicability conditions are explicit: they define where asymptotic (high‐frequency) methods are valid, and how far away from the ray the extrapolation remains accurate. Increasing the density of the ray fan improves accuracy but increases computation time. However, since reasonable accu
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Chen, Zhenzhong, Zihao Wu, Xiaoke Li, et al. "An accuracy analysis method for first-order reliability method." Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 233, no. 12 (2018): 4319–27. http://dx.doi.org/10.1177/0954406218813389.

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The first-order reliability method is widely used for structural reliability analysis; however, its accuracy would become worse for nonlinear problems. This paper proposes the accuracy analysis method of the first-order reliability method, which considers the worst cases when using the first-order reliability method and gives the possible value range of the probability of safety. The accuracy analysis method can evaluate the reliability level of the first-order reliability method when the failure surfaces are nonlinear. The calculation formula for the possible value range of the probability of
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Roberts, D. A., and M. S. Stern. "Accuracy of method of moments and weighted index method." Electronics Letters 23, no. 15 (1987): 784. http://dx.doi.org/10.1049/el:19870556.

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Kugushev, E. I., and T. V. Popova. "Estimation of the Accuracy of the Averaging Method for Systems with Multifrequency Perturbations." Nelineinaya Dinamika 16, no. 2 (2020): 379–94. http://dx.doi.org/10.20537/nd200211.

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HATTORI, Tetsuya, and Hironari MIYAZAWA. "ACCURACY OF TWO-STAGE SELECTION METHOD." Kodo Keiryogaku (The Japanese Journal of Behaviormetrics) 19, no. 2 (1992): 14–23. http://dx.doi.org/10.2333/jbhmk.19.2_14.

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Thèses sur le sujet "Method accuracy"

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Gandhi, Anall Vijaykumar. "An Accuracy Improvement Method for Cricket Indoor Location System." Wright State University / OhioLINK, 2013. http://rave.ohiolink.edu/etdc/view?acc_num=wright1369316496.

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Lau, Pak Fai. "CNC machining accuracy enhancement by tool path compensation method /." View abstract or full-text, 2005. http://library.ust.hk/cgi/db/thesis.pl?IEEM%202005%20LAU.

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Haeri, Kermani Mohammad. "The ADI-FDTD method for high accuracy electrophysics applications." College Park, Md. : University of Maryland, 2006. http://hdl.handle.net/1903/4137.

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Thesis (Ph. D.) -- University of Maryland, College Park, 2006.<br>Thesis research directed by: Electrical Engineering. Title from t.p. of PDF. Includes bibliographical references. Published by UMI Dissertation Services, Ann Arbor, Mich. Also available in paper.
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Mueller, David W. "High-speed, high-accuracy method for mutual inductance calculations." Diss., Columbia, Mo. : University of Missouri-Columbia, 2008. http://hdl.handle.net/10355/5637.

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Thesis (M.S.)--University of Missouri-Columbia, 2008.<br>The entire dissertation/thesis text is included in the research.pdf file; the official abstract appears in the short.pdf file (which also appears in the research.pdf); a non-technical general description, or public abstract, appears in the public.pdf file. Title from title screen of research.pdf file (viewed on August 13, 2009) Includes bibliographical references.
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Wang, Yin. "HIGH ACCURACY MULTISCALE MULTIGRID COMPUTATION FOR PARTIAL DIFFERENTIAL EQUATIONS." UKnowledge, 2010. http://uknowledge.uky.edu/gradschool_diss/65.

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Scientific computing and computer simulation play an increasingly important role in scientific investigation and engineering designs, supplementing traditional experiments, such as in automotive crash studies, global climate change, ocean modeling, medical imaging, and nuclear weapons. The numerical simulation is much cheaper than experimentation for these application areas and it can be used as the third way of science discovery beyond the experimental and theoretical analysis. However, the increasing demand of high resolution solutions of the Partial Differential Equations (PDEs) with less c
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Wang, Shumin. "Improved-accuracy algorithms for time-domain finite methods in electromagnetics." The Ohio State University, 2003. http://rave.ohiolink.edu/etdc/view?acc_num=osu1061225243.

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Baloch, Yasir Ali. "UMTS Positioning Methods and Accuracy in Urban Environments." Thesis, Linköpings universitet, Kommunikations- och transportsystem, 2011. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-73853.

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During the 2nd generation Global System for Mobile Communications (GSM) mobile communication, the focus of the mobile positioning was mostly on call setup and messaging. But the evolution of the 3rd generation Wideband Code Division Multiple Access (WCDMA) has changed the focus of mobile positioning. With the increase use of smart phones the mobile positioning is now extensively used for location based services (LBS’s). Mobile positioning becomes extremely important when the user requests any particular LBS, because it directly affects the communication and resource handling between the networ
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Barthelemy, Bruno. "Accuracy analysis of the semi-analytical method for shape sensitivity analysis." Diss., Virginia Polytechnic Institute and State University, 1987. http://hdl.handle.net/10919/74754.

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The semi-analytical method, widely used for calculating derivatives of static response with respect to design variables for structures modeled by finite elements, is studied in this research. The research shows that the method can have serious accuracy problems for shape design variables in structures modeled by beam, plate, truss, frame, and solid elements. Local and global indices are developed to test the accuracy of the semi-analytical method. The local indices provide insight into the problem of large errors for the semi-analytical method. Local error magnification indices are developed f
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Keita, Yaye Mallon. "Evaluation of the Accuracy of the Incremental Queue Accumulation Delay Estimation Method." Diss., CLICK HERE for online access, 2010. http://contentdm.lib.byu.edu/ETD/image/etd3485.pdf.

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Baker, Charles E. 1957. "The Angoff Method and Rater Analysis: Enhancing Cutoff Score Reliability and Accuracy." Thesis, University of North Texas, 1993. https://digital.library.unt.edu/ark:/67531/metadc500345/.

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At times called a philosophy and other times called a process, cutting score methodology is an issue routinely encountered by Industrial/Organizational (I/0) psychologists. Published literature on cutting score methodology appears much more frequently in academic settings than it does in personnel settings where the potential for lawsuits typically occurs more often. With the passage of the 1991 Civil Rights Act, it is no longer legal to use within-group scoring. It has now become necessary for personnel psychologists to develop more acceptable selection methods that fall within established gu
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Livres sur le sujet "Method accuracy"

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Efron, Bradley. The bootstrap method for assessing statistical accuracy. University of Toronto, Dept. of Statistics, 1985.

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Bochev, Pavel B. Accuracy of least-squares method for the Navier-Stokes equations. National Aeronautics and Space Administration, 1993.

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Bochev, Pavel B. Accuracy of least-squares method for the Navier-Stokes equations. National Aeronautics and Space Administration, 1993.

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Bochev, Pavel B. Accuracy of least-squares method for the Navier-Stokes equations. National Aeronautics and Space Administration, 1993.

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Bochev, Pavel B. Accuracy of least-squares method for the Navier-Stokes equations. National Aeronautics and Space Administration, 1993.

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Accuracy inspection of NC machine tools by double ball bar method. Hanser, 1993.

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Schonfeld, Thilo. Methods to enhance the accuracy of finite volume schemes II. Aeronautical Research Institute of Sweden, 1991.

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Harned, Douglas S. Extending the semi-implicit MHD method: Grid-point models and improved accuracy. Courant Institute of Mathematical Sciences, New York University, 1986.

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Harned, Douglas S. Extending the semi-impact MHD method: grid-point models and improved accuracy. Courant Institute of Mathematical Sciences, New York University, 1986.

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Turkel, Eli. Accuracy of schemes for the Euler equations with non-uniform meshes. ICASE, 1985.

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Chapitres de livres sur le sujet "Method accuracy"

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Qin, Guohua. "Analysis of Locating Accuracy." In Advanced Fixture Design Method and Its Application. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-33-4493-8_6.

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Zohdi, Tarek I. "Accuracy of the Finite Element Method." In A Finite Element Primer for Beginners. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-09036-8_4.

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Zohdi, Tarek I. "Accuracy of the Finite Element Method." In A Finite Element Primer for Beginners. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-09036-8_8.

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Obertová, Zuzana, and Michael Francken. "Tooth Cementum Annulation Method: Accuracy and Applicability." In Frontiers of Oral Biology. KARGER, 2009. http://dx.doi.org/10.1159/000242415.

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Fujita, Ichiro, and Saburo Komura. "On the Accuracy of the Correlation Method." In Flow Visualization VI. Springer Berlin Heidelberg, 1992. http://dx.doi.org/10.1007/978-3-642-84824-7_154.

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Arora, Konark, and Suresh M. Deshpande. "Accuracy and Robustness of Kinetic Meshfree Method." In Meshfree Methods for Partial Differential Equations V. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-16229-9_11.

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Bauer, Maria, Philipp Birken, Volker Hannemann, and Kai Oßwald. "Accuracy in a Finite Volume Godunov Type Method." In Notes on Numerical Fluid Mechanics and Multidisciplinary Design. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-35680-3_46.

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Zhao, Zhitong, Jiantao Zhou, and Haifeng Xing. "A High Accuracy Nonlinear Dimensionality Reduction Optimization Method." In Computer Supported Cooperative Work and Social Computing. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-15-1377-0_55.

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Rubenchik, V. "Boundary Integral Equation Method of Higher Computational Accuracy." In Advanced Boundary Element Methods. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-642-83003-7_40.

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Zohdi, Tarek I. "Accuracy of the Finite Element Method in One Dimension." In A Finite Element Primer for Beginners. Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-70428-9_4.

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Actes de conférences sur le sujet "Method accuracy"

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Morimoto, Yoshiharu, and Motoharu Fujigaki. "Accuracy of sampling moiré method." In International Conference on Experimental Mechnics 2008 and Seventh Asian Conference on Experimental Mechanics, edited by Xiaoyuan He, Huimin Xie, and YiLan Kang. SPIE, 2008. http://dx.doi.org/10.1117/12.839206.

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Xiao, Fei, Xiaohong Tang, and Lei Guo. "High-order accurate ADI-FDTD method with high-order spatial accuracy." In 2007 International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications. IEEE, 2007. http://dx.doi.org/10.1109/mape.2007.4393783.

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Wang, Bingjian, Hongbin Lou, Hanlin Qin, Huixin Zhou, and Rui Lai. "Accuracy estimation of images registration method." In 2012 5th International Congress on Image and Signal Processing (CISP). IEEE, 2012. http://dx.doi.org/10.1109/cisp.2012.6469764.

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Strzelczyk, Andrzej, and Mike Stojakovic. "Simplified Stress Linearization Method, Maintaining Accuracy." In ASME 2012 Pressure Vessels and Piping Conference. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/pvp2012-78521.

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ASME PVP Code stress linearization is needed for assessment of primary and primary-plus-secondary stresses. The linearization process is not precisely defined by the Code; as a result, it may be interpreted differently by analysts. The most comprehensive research on stress linearization is documented in the work of Hechmer and Hollinger [1]. Recent non-mandatory recommendations on stress linearization are provided in Annex 5A of Section VIII, Division 2 of ASME PVP Code [2]. In the work of Kalnins [3] some linearization questions are discussed in two examples; the first is a plane-strain probl
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Abramov, Aleksey M., Sergey G. Gurzhin, Vladimir I. Zhulev, Evgeniy M. Proshin, and Andrey V. Shulyakov. "Analysis of Metrological Test Method Accuracy." In 2020 9th Mediterranean Conference on Embedded Computing (MECO). IEEE, 2020. http://dx.doi.org/10.1109/meco49872.2020.9134095.

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Zhao, Run, Qian Zhang, Dong Li, Haonan Chen, and Dong Wang. "A novel accurate synthetic aperture RFID localization method with high radial accuracy." In 2017 IEEE 18th International Symposium on " World of Wireless, Mobile and Multimedia Networks (WoWMoM). IEEE, 2017. http://dx.doi.org/10.1109/wowmom.2017.7974314.

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Holmes, A. "A Method To Analyze Directional Surveying Accuracy." In SPE Annual Technical Conference and Exhibition. Society of Petroleum Engineers, 1987. http://dx.doi.org/10.2118/16680-ms.

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Kovbasa, A. P., A. M. Pidgurskiy, and V. A. Shayda. "Method of accuracy improvement in auto radar." In 2005 15th International Crimean Conference Microwave and Telecommunication Technology. IEEE, 2005. http://dx.doi.org/10.1109/crmico.2005.1565156.

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Bosiljevac, M., and Z. Sipus. "Accuracy of Hybrid Spectral Domain-UTD Method." In 2005 18th International Conference on Applied Electromagnetics and Communications. IEEE, 2005. http://dx.doi.org/10.1109/icecom.2005.204971.

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Fu, Yuegang, Zhijian Wang, and Chunyan Wang. "Measuring method on relative image stabilization accuracy." In Photonics Asia 2002, edited by Zhicheng Weng, Jose M. Sasian, and Yongtian Wang. SPIE, 2002. http://dx.doi.org/10.1117/12.471649.

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Rapports d'organisations sur le sujet "Method accuracy"

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Efron, Bradley, and Robert Tibshirani. The Bootstrap Method for Assessing Statistical Accuracy. Defense Technical Information Center, 1985. http://dx.doi.org/10.21236/ada161257.

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Tkac, Peter, and George Vandegrift. Method for Increased Accuracy of ICP-MS Detection of Potassium in Samples with High Molybdenum Content. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1155037.

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Tkac, Peter, and George F. Vandegrift. Method for Increased Accuracy of ICP-MS Detection of Potassium in Samples wth High Molybdenum Content. Office of Scientific and Technical Information (OSTI), 2014. http://dx.doi.org/10.2172/1150077.

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Nelson, Eric Michael. High accuracy electromagnetic field solvers for cylindrical waveguides and axisymmetric structures using the finite element method. Office of Scientific and Technical Information (OSTI), 1993. http://dx.doi.org/10.2172/10129732.

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Barnard, Amanda C., Jr Vickers, and Ross R. Estimating Effect Sizes From Graphs Using Electronic Calipers: An Analysis of the Reliability and Accuracy of a Data-Gathering Method. Defense Technical Information Center, 2010. http://dx.doi.org/10.21236/ada520853.

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Yu, Haichao, Haoxiang Li, Honghui Shi, Thomas S. Huang, and Gang Hua. Any-Precision Deep Neural Networks. Web of Open Science, 2020. http://dx.doi.org/10.37686/ejai.v1i1.82.

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We present Any-Precision Deep Neural Networks (Any- Precision DNNs), which are trained with a new method that empowers learned DNNs to be flexible in any numerical precision during inference. The same model in runtime can be flexibly and directly set to different bit-width, by trun- cating the least significant bits, to support dynamic speed and accuracy trade-off. When all layers are set to low- bits, we show that the model achieved accuracy compara- ble to dedicated models trained at the same precision. This nice property facilitates flexible deployment of deep learn- ing models in real-worl
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Gottlieb, David, and Wai-Sun Don. High Order Accuracy Methods for Supersonic Reactive Flows. Defense Technical Information Center, 2008. http://dx.doi.org/10.21236/ada483410.

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Gottlieb, David. High Order Accuracy Methods for the Simulations of Reactive Flows. Defense Technical Information Center, 2004. http://dx.doi.org/10.21236/ada431697.

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Gottlieb, David, Chi-Wang Shu, P. F. Fischer, and W. S. Don. High Order Accuracy Computational Methods in Aerodynamics Using Parallel Architectures. Defense Technical Information Center, 1996. http://dx.doi.org/10.21236/ada313224.

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Gottlieb, David. High Order Accuracy Methods for PDEs with Shocks and Uncertainties. Defense Technical Information Center, 2009. http://dx.doi.org/10.21236/ada586719.

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