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LEADER 00000cam  2200541Ii 4500 
001    ocn123907269 
003    OCoLC 
005    20160518075600.3 
006    m     o  d         
007    cr cnu---unuuu 
008    070501s2006    maua    ob    001 0 eng d 
019    243612602|a473868085|a488356777|a560358303|a648134269
       |a722542213|a728027258|a888806216 
020    9781596930865|q(electronic bk.) 
020    1596930861|q(electronic bk.) 
035    (OCoLC)123907269|z(OCoLC)243612602|z(OCoLC)473868085
       |z(OCoLC)488356777|z(OCoLC)560358303|z(OCoLC)648134269
       |z(OCoLC)722542213|z(OCoLC)728027258|z(OCoLC)888806216 
040    N$T|beng|epn|erda|cN$T|dOCLCQ|dSFB|dOCLCQ|dDKDLA|dMERUC
       |dCCO|dE7B|dOCLCQ|dFVL|dCSU|dOCLCQ|dOCLCF|dOCLCQ|dYDXCP
       |dOCLCO|dOCLCQ 
049    GTKE 
050  4 QC760.54|b.P37 2006eb 
082 04 537|222 
245 00 Parallel finite-difference time-domain method /|cWenhua Yu
       [and others]. 
264  1 Boston, MA :|bArtech House,|c[2006] 
264  4 |c©2006 
300    1 online resource (x, 262 pages) :|billustrations. 
336    text|btxt|2rdacontent 
337    computer|bc|2rdamedia 
338    online resource|bcr|2rdacarrier 
490 1  Artech House electromagnetic analysis series 
504    Includes bibliographical references and index. 
505 0  Parallel Finite-Difference Time-Domain Method; Contents; 
       Preface; FDTD Method; Chapter 2 Boundary Conditions; 
       Chapter 3 Improvement of the FDTD; Chapter 4 Excitation 
       Source; Chapter 5 Data Collection and Post-Processing; 
       Chapter 6 Introduction to Parallel Computing Systems; 
       Chapter 7 Parallel FDTD Method; Chapter 8 Illustrative 
       Engineering Applications; Chapter 9 FDTD Analysis of 
       Bodies of Revolution; Chapter 10 Parallel BOR/FDTD; 
       Appendix A Introduction to Basic MPI Functions; Appendix B
       PC Cluster-Building Techniques; List of Notations; About 
       the Authors; Index. 
520    The finite-difference time-domain (FTDT) method has 
       revolutionized antenna design and electromagnetics 
       engineering. This book raises the FDTD method to the next 
       level by empowering it with the vast capabilities of 
       parallel computing. It shows engineers how to exploit the 
       natural parallel properties of FDTD to improve the 
       existing FDTD method and to efficiently solve more complex
       and large problem sets. Professionals learn how to apply 
       open source software to develop parallel software and 
       hardware to run FDTD in parallel for their projects. The 
       book features hands-on examples that illustrate th. 
588 0  Print version record. 
650  0 Electromagnetism|xData processing. 
650  0 Parallel programming (Computer science) 
650  0 Finite differences|xData processing. 
650  0 Time-domain analysis. 
650  7 SCIENCE|xPhysics|xElectromagnetism.|2bisacsh 
650  7 SCIENCE|xPhysics|xElectricity.|2bisacsh 
650  7 Electromagnetism|xData processing.|2fast
       |0(OCoLC)fst00906593 
650  7 Finite differences|xData processing.|2fast
       |0(OCoLC)fst00924896 
650  7 Parallel programming (Computer science)|2fast
       |0(OCoLC)fst01052939 
650  7 Time-domain analysis.|2fast|0(OCoLC)fst01151183 
700 1  Yu, Wenhua. 
776 08 |iPrint version:|tParallel finite-difference time-domain 
       method.|dBoston, MA : Artech House, ©2006|z1596930853
       |z9781596930858|w(DLC)  2006045967|w(OCoLC)65767412 
830  0 Artech House electromagnetic analysis series. 
914    ocn123907269 
994    93|bGTK 
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