LEADER 01840oam 2200541 450 001 9910712067303321 005 20190329141119.0 035 $a(CKB)5470000002489427 035 $a(OCoLC)1048000084 035 $a(EXLCZ)995470000002489427 100 $a20180807d1958 ua 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aSurface water supply of the United States, 1956$hPart 1-A$iNorth Atlantic slope basins, Maine to Connecticut /$fprepared under the direction of J.V.B. Wells 210 1$a[Washington, D.C.] :$cUnited States Department of the Interior, Geological Survey,$d1958. 215 $a1 online resource (viii, 257 pages) $cillustrations, maps 225 1 $aGeological Survey water-supply paper ;$v1431 300 $a"Prepared in cooperation with the States of Connecticut, Maine, Massachusetts, New Hampshire, Rhode Island, and Vermont, and with other agencies." 300 $aIncludes index. 606 $aWater-supply$zNortheastern States 606 $aWater quality$zNortheastern States 606 $aWater quality$2fast 606 $aWater-supply$2fast 607 $aNortheastern States$2fast 615 0$aWater-supply 615 0$aWater quality 615 7$aWater quality. 615 7$aWater-supply. 700 $aWells$b J. V. 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Introduction -- Modeling and Simulation in Materials Science -- Fundamentals and Solution of Differential Equations -- Simulation Techniques at the Nanoscopic?Microscopic Scale. Fundamentals -- Statistical Mechanics in Atomic-Scale Simulations -- Monte Carlo Simulation and Integration -- Molecular Dynamics -- Simulation Techniques at the Microscopic?Mesoscopic Scale. Introduction -- Discrete Dislocation Statics and Dynamics: Sections 9.1?9.3 -- Discrete Dislocation Statics and Dynamics: Sections 9.4?9.8 -- Ginzburg?Landau-Type Phase Field Kinetic Models -- Cellular Automata -- Mesoscale Kinetic Monte Carlo and Potts Models -- Geometrical and Component Models -- Topological Network and Vertex Models -- Simulation Techniques at the Mesoscopic?Macroscopic Scale. Introduction -- Finite Element and Difference Methods at the Meso -- Macroscale -- Polycrystal Elasticity and Plasticity Models -- Integrated Modeling and Simulation. Fundamentals -- Space and Time Scales in Microstructure Simulation -- Appendices. Appendix A: General Reading -- Appendix B: Computer Classification -- Appendix C: Advanced Empirical Methods -- Appendix D: Percolation Theory -- References -- Index. 330 $aModeling and simulation play an ever increasing role in the development and optimization of materials. Computational Materials Science presents the most important approaches in this new interdisciplinary field of materials science and engineering. The reader will learn to assess which numerical method is appropriate for performing simulations at the various microstructural levels and how they can be coupled. 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