jagomart
digital resources
picture1_Principles Of Compiler Design Pdf 188519 | 13 Pd Referencies


 122x       Filetype PDF       File size 0.07 MB       Source: www.tdx.cat


File: Principles Of Compiler Design Pdf 188519 | 13 Pd Referencies
references ansys http www ansys com default asp bison http www gnu org software bison boost library http www boost org boost serialization library http www boost org libs serialization ...

icon picture PDF Filetype PDF | Posted on 02 Feb 2023 | 2 years ago
Partial capture of text on file.
          References
           [1] Ansys. http://www.ansys.com/default.asp.
           [2] Bison. http://www.gnu.org/software/bison/.
           [3] Boost library. http://www.boost.org/.
           [4] Boost serialization library. http://www.boost.org/libs/serialization/doc/index.html.
           [5] Boost spirit library. http://www.boost.org/libs/spirit/index.html.
           [6] Flex. http://”ex.sourceforge.net/.
           [7] A quality tetrahedral mesh generator and three-dimensional delaunay triangulator (tetgen)
             programming interface. http://tetgen.berlios.de/library.html.
           [8] Stlport. http://www.stlport.org/.
           [9] Xparam library. http://xparam.sourceforge.net/.
           [10] ABAQUS Inc. ABAQUS Scripting Reference Manual.
           [11] ABAQUS Inc. ABAQUS Scripting User’s Manual.
           [12] A. V. Aho, R. Sethi, and J. D. Ullman. Compilers Priciples, Techniques, and Tools. Addison-
             Wesley, 1986.
           [13] A. V. Aho and J. D. Ullman. Principles of Compiler Design. Addison-Wesley, 1978.
           [14] A. V. Aho, J. D. Ullman, and J. E. Hopcroft. Data Structures and Algorithms. Addison-
             Wesley, 1983.
           [15] E. Anderson, Z. Bai, C. Bischof, S. Blackford, J. Demmel, J. Dongarra, J. D. Croz, A. Green-
             baum, S. Hammarling, A. McKenney, and D. Sorensen. LAPACK Users’ Guide.Societyfor
             Industrial and Applied Mathematics, Philadelphia, PA, USA, second edition, 1995.
           [16] A. W.AppelandM.Ginsburg.ModernCompilerImplementationinC.CambridgeUniversity
             Press, 1999.
           [17] G. C. Archer. Object-Oriented Finite Element Analysis. PhD thesis, University of California
             at Berkeley, 1996.
                               281
                 282                                                                                        REFERENCES
                   [18] G. C. Archer, G. Fenves, and C. Thewalt. A new object-oriented “nite element analysis
                       program architecture. Computers & Structures, 70(1):63–75, 1999.
                   [19] W. Bangerth. Using modern features of C++ for adaptive “nite element methods:
                       Dimension-independent programming in deal.II. In M. Deville and R. Owens, editors, Pro-
                       ceedings of the 16th IMACS World Congress 2000, Lausanne, Switzerland, 2000, 2000. Doc-
                       ument Sessions/118-1.
                   [20] W. Bangerth, R. Hartmann, and G. Kanschat. deal.II Differential Equations Analysis
                       Library, Technical Reference. http://www.dealii.org.
                   [21] W. Bangerth, R. Hartmann, and G. Kanschat. deal.II – a general purpose object oriented
                       “nite element library. Technical Report ISC-06-02-MATH, Institute for Scienti“c Computa-
                       tion, Texas A&M University, 2006.
                   [22] W. Bangerth and G. Kanschat. Concepts for object-oriented “nite element software – the
                       deal.II library. Preprint 99-43 (SFB 359), IWR Heidelberg, Oct. 1999.
                   [23] K.-J. Bathe. Finite element procedures. Prentice-Hall, 1996.
                   [24] C. Bishop. Neural Networks for Pattern Recognition. Oxford University Press, 1995.
                   [25] A. Cardona, I. Klapka, and M. Geradin. Design of a new “nite element programming envi-
                       ronment. Engineering Computations, 11(4):365–381, 1994.
                   [26] R. Codina. Pressure stability in fractional step “nite element methods for incompressible
                       ”ows. Journal of Computational Physics, 170:112140, 2001.
                   [27] R. Codina. Stabilized “nite element approximation of transient incompressible ”ows using or-
                       thogonal subscales. Computer Methods in Applied Mechanics and Engineering, 191(39):4295–
                       4321, 2002.
                   [28] H.-P. Company. Sgi standard template library (stl). http://www.sgi.com/tech/stl/.
                   [29] Coupled Problems 2007. Updated lagrangian formulation of a quasi-incompressible fluid ele-
                       ment, Ibiza, Spain, 2007.
                   [30] P. Dadvand, R. Lopez, and E. Onate.˜   Arti“cial neural networks for the solution of inverse
                       problems. In ERCOFTAC, 2006.
                   [31] P. Dadvand, J. Mora, C. Gonz´alez, A. Arraez, P. Ubach, and E. Onate.˜   Kratos: An object-
                       oriented environment for development of multi-physics analysis software. In Proceedings of
                       the WCCM V Fifth World Congress on Computational Mechanics. WCCM V Fifth World
                       Congress on Computational Mechanics, July 2002.
                   [32] J. Don´ea and A. Huerta. Finite Element Methods for Flow Problems. John Wiley and Sons,
                       2003.
                   [33] Y. Dubois-P´elerin and P. Pegon. Improving modularity in object-oriented “nite element
                       programming. Communications in Numerical Methods in Engineering., 13:193–198, 1997.
                   [34] Y. Dubois-P`elerin and T. Zimmermann. Object-oriented “nite element programming: Iii.
                       an efficient implementation in c++. Comput. Methods Appl. Mech. Eng., 108(1-2):165–183,
                       1993.
                           REFERENCES                                                                                                     283
                            [35] Y. Dubois-P`elerin, T. Zimmermann, and P. Bomme. Object-oriented “nite element in pro-
                                  gramming: Ii. a prototype program in smalltalk. Comput. Methods Appl. Mech. Eng.,
                                  98(3):361–397, 1992.
                            [36] I. S. Duff, A. M. Erisman, and J. K. Reid. Direct methods for sparse matrices.Clarendon
                                  Press, New York, NY, USA, 1989.
                            [37] D. R. Edelson. Smart pointers: Theyre smart, but theyre not pointers. Technical report,
                                  Santa Cruz, CA, USA, 1992.
                            [38] D. Eyheramendy and T. Zimmermann. Object-oriented “nite element programming: an
                                  interactive environment for symbolic derivations, application to an initial boundary value
                                  problem. Adv. Eng. Softw., 27(1-2):3–10, 1996.
                            [39] D. Eyheramendy and T. Zimmermann. Object-oriented “nite elements ii. a symbolic environ-
                                  ment for automatic programming. Comput. Methods Appl. Mech. Eng., 132(3):277–304(28),
                                  June 1996.
                            [40] D. Eyheramendy and T. Zimmermann. Object-oriented “nite elements iii. theory and ap-
                                  plication of automatic programming. Comput. Methods Appl. Mech. Eng., 154(1):41–68(28),
                                  February 1998.
                            [41] C. A. Felippa and T. L. Geers. Partitioned analysis of coupled mechanical systems. Engrg.
                                  Comput., 5:123–133, 1988.
                            [42] C. A. Felippa, K. C. Park, and C. Farhat. Partitioned analysis of coupled mechanical systems.
                                  Computer Methods in Applied Mechanics and Engineering, 190:3247–3270, 2001.
                            [43] J. R. A. Filho and P. R. B. Devloo. Object oriented programming in scienti“c computations
                                  : the beginning of a new era. Engineering computations, 8(1):81–87, 1991.
                            [44] B. W. R. Forde, R. O. Foschi, and S. F. Stiemer. Object-oriented “nite element analysis.
                                  Comp. Struct., 34(3):355–374, 1990.
                            [45] E. Gamma, R. Helm, R. Johnson, and J. Vlissides. Design Patterns: Elements of Reusable
                                  Object-Oriented Software. Addison Wesley Professional, 1995.
                            [46] G. H. Gonnet and R. Baeza-Yates. Handbook of algorithms and data structures: in Pascal
                                  and C (2nd ed.). Addison-Wesley Longman Publishing Co., Inc., Boston, MA, USA, 1991.
                            [47] S. Haykin. Neural Networks: A Comprehensive Fundation. Prentice Hall, 1994.
                            [48] K. Hornik, M. Stinchcombe, and H. White. Multilayer feedforward networks are universal
                                  approximators. Neural Netw., 2(5):359–366, 1989.
                            [49] S. R. Idelson and E. Onate.˜      To mesh or not to mesh. that is the question. Computer methods
                                  in applied mechanics and engineering, 195:4681–4696, 2006.
                            [50] S. R. Idelson, E. Onate,˜       N. Calvo, and F. D. Pin. The meshless “nite element method.
                                  International Journal for Numerical Methods in Engineering, 58:893–912, 2003.
                            [51] S. R. Idelson, E. Onate,˜     and F. D. Pin. The particle “nite element method: a powerful tool
                                  to solve incompressible ”ows with free-surfaces and breaking waves. International Journal
                                  for Numerical Methods in Engineering, 61:964 – 989, 2004.
                   284                                                                                                 REFERENCES
                    [52] A. Kirsch. An Introduction to the Mathematical Theory of Inverse Problems. Springer, 1996.
                    [53] I. Klapka, A. Cardona, and M. Geradin. An object oriented implementation of the “nite
                          element method for coupled problems. Revue Europenne des lments Finis, 7(5):469–504,
                          1998.
                    [54] I. Klapka, A. Cardona, and M. Geradin. Interpreter oofelie for pdes. In European Congress
                          on Computational Methods in Applied Sciences and Engineering (ECCOMAS 2000), 2000.
                    [55] D. E. Knuth. The Art of Computer Programming: Sorting and Searching, volume 3. Addison-
                          Wesley, 2nd edition, 1998.
                    [56] Laboratory for Computational Physics and Fluid Dynamics (LCP&FD). FEFLO Project.
                    [57] A. Larese, R. Rossi, E. Onate,˜      and S. R. Idelson. Validation of the particle “nite element
                          method (pfem) for simulation of free surface ”ows. Submitted for publication to Engineering
                          and Computation, 2007.
                    [58] J. Lindemann, O. Dahlblom, and G. Sandberg. Using corba middleware in “nite element
                          software. Future Generation Comp. Syst., 22(1-2):158–193, 2006.
                    [59] R. L¨ohner. Applied CFD Techniques: An Introduction Based on Finite Element Methods.
                          Wiley, 2001.
                    [60] R. Lopez. Flood: An Open Source Neural Networks C++ Library. CIMNE.
                    [61] J. Lu, D. White, and W.-F. Chen. Applying object-oriented design to “nite element program-
                          ming. In SAC ’93: Proceedings of the 1993 ACM/SIGAPP symposium on Applied computing,
                          pages 424–429, New York, NY, USA, 1993. ACM Press.
                    [62] J. Lu, D. W. White, W.-F. Chen, and H. E. Dunsmore. A matrix class library in c++ for
                          structural engineering computing. Coputers & Structures, 55(1):95–111, 1995.
                    [63] F. Lundh. Python Standard Library. OReilly & Associates, Inc., Sebastopol, CA, USA, 2001.
                    [64] R. I. Mackie. Object oriented programming of the “nite element method. International jour-
                          nal for numerical methods in engineering, 35(2):425–436, 1992.
                    [65] R. I. Mackie. Using objects to handle complexity in “nite element software. Engineering with
                          Computers, 13(2):99–111, 1997.
                    [66] Maplesoft. Maple’s Documentation.
                    [67] T. Mason and D. Brown. Lex & yacc. OReilly & Associates, Inc., Sebastopol, CA, USA,
                          1990.
                    [68] MathWorks. Matlab’s Documentation.
                    [69] P. Menetrey and T. Zimmermann. Object-oriented non-linear “nite element analysis: appli-
                          cation to j2 plasticity. Computers & Structures, 49(5):767–773, 1993.
                    [70] G. R. Miller. An object-oriented approach to structural analysis and design. Coputers &
                          Structures, 40(1):75–82, 1991.
                    [71] G. R. Miller. Coordinate-free isoparametric elements. Coputers & Structures, 49(6):1027–
                          1035, 1994.
The words contained in this file might help you see if this file matches what you are looking for:

...References ansys http www com default asp bison gnu org software boost library serialization libs doc index html spirit flex ex sourceforge net a quality tetrahedral mesh generator and three dimensional delaunay triangulator tetgen programming interface berlios de stlport xparam abaqus inc scripting reference manual user s v aho r sethi j d ullman compilers priciples techniques tools addison wesley principles of compiler design e hopcroft data structures algorithms anderson z bai c bischof blackford demmel dongarra croz green baum hammarling mckenney sorensen lapack users guide societyfor industrial applied mathematics philadelphia pa usa second edition w appelandm ginsburg moderncompilerimplementationinc cambridgeuniversity press g archer object oriented finite element analysis phd thesis university california at berkeley fenves thewalt new nite program architecture computers bangerth using modern features for adaptive methods dimension independent in deal ii m deville owens editors p...

no reviews yet
Please Login to review.