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Koonin S.E., Meredith D.C. — Computational Physics-Fortran Version
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Название: Computational Physics-Fortran Version
Авторы: Koonin S.E., Meredith D.C.
Аннотация: Computational Physics is designed to provide direct experience in the computer modeling of physical systems. Its scope includes the essential numerical techniques needed to "do physics" on a computer. Each of these is developed heuristically in the text, with the aid of simple mathematical illustrations. However, the real value of the book is in the eight Examples and Projects, where the reader is guided in applying these techniques to substantial problems in classical, quantum, or statistical mechanics. These problems have been chosen to enrich the standard physics curriculum at the advanced undergraduate or beginning graduate level. The book will also be useful to physicists, engineers, and chemists interested in computer modeling and numerical techniques. Although the user-friendly and fully documented programs are written in FORTRAN, a casual familiarity with any other high-level language, such as BASIC, PASCAL, or C, is sufficient.
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Рубрика: Руководства по программному обеспечению /
Статус предметного указателя: Готов указатель с номерами страниц
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Год издания: 1998
Количество страниц: 639
Добавлена в каталог: 24.11.2013
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Предметный указатель
ion 83
molecule 17 19 221ff
molecule, electron correlation 224
molecule, electronic eigenvalue 221
molecule, molecular potential 230
molecule, variational energy 223
molecule, variational wave function 224
molecule 17
-function potential 72
133
, liquid 221
40 Eri B 53
6-12 potential 14 222 see
Abscissae, gaussian quadrature 95
Acceleration parameter, elliptic partial differential equations 180
Accuracy monitoring, ordinary differential equations 32
Accuracy, ordinary differential equations 68
Accuracy, partial differential equation 174
Accuracy, quadrature 8 9
action 16
Adams — Bashforth, four-step method 30
Adams — Bashforth, two-step method 29
Adams — Moulton methods 31
Alternating-direction methods, partial differential equation 180
Angle, scattering 20
Annihilation operator 135
Anti-ferromagnetic couplings 220
Anti-ferromagnetism 216
Approximation, Born 96ff 121
Approximation, Born — Oppenheimer 14 221
Approximation, central-field 78
Approximation, eikonal 96ff 99 129
Approximation, filling 78
Approximation, Hartree — Fock 72ff 222
Approximation, linear 109 123
Approximation, self-consistent field 72
Approximation, semiclassical 14 98 139
Approximation, WKB 16
Atomic, nucleus 120
Atomic, orbitals, linear combination 224
Atomic, Structure 72ff
Atoms, low-energy resonances 108
Atoms, multi-electron 72
Auto-correlation, Metropolis algorithm 214 219
Bessel function, cylindrical 67 87
Bessel function, cylindrical, polynomial approximation 87
Bessel function, cylindrical, recursion relation 81ff
Bessel function, spherical 92 104
Binary alloy 215
Bode's rule 9
Born approximation 96ff 121
Born scattering amplitude 98
Born — Oppenheimer approximation 14 221
Bound solutions 14 67
Boundary conditions, Dirichlet 146 169
Boundary conditions, fixed 190
Boundary conditions, mixed 146
Boundary conditions, Neumann 146 150 178
Boundary conditions, no-flux 190
Boundary conditions, no-slip 165
Boundary conditions, periodic 158
Boundary value problems 55ff
Boundary value problems, Green's function solution 61ff
Boundary value problems, round-off error 60
Boundary value problems, shooting method 64 67
Brusselator 189ff
Brusselator, equilibrium values 190
Brusselator, linear stability analysis 191ff
canonical ensemble 216
Canonical transformation 45
Capacitance 157
Central potential 20 38 45 103
Central-field approximation 78
Centrifugal potential 21 104
Chandrasekhar mass 53
Chaotic, dynamics 37ff.
Chaotic, regions of phase space 42
Charge density parameters, uncertainty 125
Chemical reactions 189ff
Chi-square, minimization 123
Classical scattering 20ff
Classically forbidden region 67
codes see "Programs"
Collective behavior 134
Constant of the motion 38
Continuity equation 159
Convection 159
Convergence, root finding 13
Correlation, electrons in molecule 224
Correlation, Metropolis algorithm 214 219
Coulomb potential 14 57 72 121
Cowling's method 56
Creation operator 135
Cross section, differential 20 121
Cross section, Mott 122
Cross section, Rutherford 121
Cross section, total 97
Cylindrical Bessel function 67 87ff
Cylindrical geometry, elliptic partial differential equations 156
Data analysis 123
de Broglie wave number 16
Deflection function 20ff
Degeneracy pressure, electrons 46
Determinant, matrix 110 112
Diatomic molecule 14
dielectric constant 155
Differential cross section 20 121
Differential equations, ordinary 25ff
Differential equations, partial 145ff
Differentiation 1 2ff
Differentiation, 2-point 3
Differentiation, 3-point 3
Differentiation, 4-point 6
Differentiation, 5-point 5 6
Differentiation, backward 3
Differentiation, forward 3
Differentiation, instability 4
Differentiation, round-off error 4
Differentiation, symmetric 3
Diffusion coefficient 155
Diffusion equation 146
Dirac scattering 129
Dirichlet boundary conditions 146 169
Double-well potential 72
Drift function, Path Integral Monte Carlo 226
Driving term, ordinary differential equation 55
Eddy 167
Eigenvalue problem, differential equation 56 64ff 147
Eigenvalue problem, differential equation, iterative method 188ff
Eigenvalue problem, differential equation, iterative method, round-off errors 186
Eigenvalue problem, differential equation, non-linear 72
Eigenvalue problem, differential equation, root finding 65
Eigenvalue problem, matrix 112ff
Eigenvalue problem, matrix, Gerschgorin's bounds 114
Eigenvalue problem, matrix, Lanczos algorithm 119
Eigenvalue problem, matrix, root finding 113
Eigenvalue problem, matrix, tri-diagonal matrix 113
Eigenvectors, inverse iteration 118
Eikonal, approximation 96ff 99 129
Eikonal, scattering amplitude 99
Electronic eigenvalue, molecule 221
Electrons, correlation, molecule 224
Electrons, degeneracy pressure in white dwarf stars 46
Electrons, density in atoms 74
Electrons, free Fermi gas 47
Electrons, gas 221
Electrons, scattering from neutral atoms, high-energy 96ff
Electrons, scattering from neutral atoms, low-energy 103ff
Electrons, scattering from nuclei 120ff
Electrons, spin state in atoms 73
Electrons, valence 78
Electrostatics problem 157
Elliptic fixed points 42
Elliptic partial differential equations 145ff
Elliptic partial differential equations, cylindrical geometry 156
Elliptic partial differential equations, eigenvalue problem 147 181ff
Elliptic partial differential equations, iterative methods 151ff
Elliptic partial differential equations, spatially varying dielectric constant 155
Elliptic partial differential equations, spherical geometry 156
Elliptic partial differential equations, two-dimensional 180
Elliptic partial differential equations, variational principle 147ff
Equation of state 47
Equation of state, polytropic 52
Equilibrium values, Brusselator 190
Errors see also "Accuracy" "Inaccuracy" "Instability" "Round-off" "Stability" "Uncertainty"
Errors, Monte Carlo methods 204
Euler — Lagrange equations 75
Euler's method 26
Exchange, energy 79
Exchange, matrix elements 75
Explicit scheme, parabolic partial differential equation 170
Faraday Cage 157
Fermi, function 126
Fermi, gas of electrons 47
Fermi, momentum 48
Ferromagnetic couplings 220
ferromagnetism 215
Filling approximation 78
Finding of roots 11ff see
Finite square-well potential 72
Fixed boundary condition 190
Fixed points 42
Fixed points, elliptic 42
Fixed points, hyperbolic 42
Fluid flow 158ff
Fluid flow, incompressible, viscous 159
Fluid flow, jump geometry 168
Fluid flow, nozzle geometry 168
Fock potential 80
Forbidden region, classical 67
Force, gravitational 46
Force, pressure 159
Force, viscous 159 167
Fourier expansion 126 127
Fourier — Bessel transform 129
Gauss — Chebyshev quadrature 96
Gauss — Hermite quadrature 95
Gauss — Jordan method, matrix inversion 110
Gauss — Laguerre quadrature 94
Gauss — Legendre quadrature 94 102
Gauss — Seidel iteration 151
Gaussian, distribution, random number generation 208
Gaussian, elimination and back-substitution 175
Gaussian, quadrature 85ff 92ff
Gaussian, wavepacket 188
Gaussian, well potential 101 188
Geometry, cylindrical, elliptic partial differential equations 156
Geometry, jump, fluid flow 168
Geometry, nozzle, fluid flow 168
Geometry, spherical, elliptic partial differential equations 156
Gerschgorin's bounds, eigenvalue problem 114
Gravitational force 46
Green's function, Monte Carlo 225
Green's function, solution, boundary value problems 61ff
Hamiltonian, integrable 38
Hamiltonian, separable 38
Harmonic-oscillator potential, path integral Monte Carlo 230
Hartree — Fock approximation 72ff 133
HD molecule 17
He atom 230
Heat bath algorithm, Monte Carlo methods 220
Heisenberg model 215
Henon and Heiles potential 42
Hermite polynomials 87
High energy quantum scattering 96ff
High energy quantum scattering, Born approximation 98
High energy quantum scattering, eikonal approximation 98
High energy quantum scattering, semiclassical approximation 98
Homogeneous equation 60 61
Householder method 115
Hydrodynamics, steady state 158ff
Hydrogenic orbital 76 84
Hyperbolic fixed points 42
Impact parameter 20 98 129
Implicit methods, ordinary differential equations 30
Implicit methods, parabolic partial differential equations 174
Inaccuracy, ordinary differential equations 26
Infinite lattice, Ising model 217
Inhomogeneous term, differential equation 55
Initial value problem 26
Initial value problem, ordinary differential equations 26 58
Initial value problem, partial differential equation 169 172
Integrable Hamiltonian 38
Integrable singularities 10
Integrals, multi-dimensional 197
Integration see "Differential equations" "Quadrature"
Interaction, coulomb 14
Interaction, van der Waals 14
Invariant torus 42
Inverse vector iteration 118
Inversion, matrix 109
Ising model 215ff
Ising model, infinite lattice 217
Ising model, phase transition 218 220
Ising model, thermodynamic properties 215
Jump geometry, fluid flow 168
Kam theorem 42
Lagrange multiplier 77 124 182
Laguerre polynomials 87
Lanczos algorithm, eigenvalue problem 119
Lane — Emden equation 52
Laplace's equation 157ff
Lattice gauge theories 221
Legendre polynomials 86 93 104
Legendre polynomials, recursion relations 86
Lennard — Jones potential 14ff 20 69 see
Lenz — Jensen potential 101
Linear approximation 109 123
Linear combination, atomic orbitals 224
Linear congruential method, random numbers 205
Linear stability analysis for the Brusselator 191ff
Liquid drop 126
Lissajous patterns 38
Lommel function 130
Lorentzian wavepacket 188
Low-energy atomic resonances 108
Low-energy scattering 103ff
Magnetic field 215
Magnetic material 215
magnetization 217
Mass, Chandrasekhar 53
Matrix, determinant 110 112
Matrix, eigenvalue problem 112ff
Matrix, Gaussian elimination and back substitution 175
Matrix, Householder method 115ff
Matrix, inversion 109ff
Matrix, inversion, equilibration 112
Matrix, inversion, Gauss — Jordan method 110
Matrix, inversion, numerical round-off error 112
Matrix, inversion, pivoting 111
Matrix, operations 109ff
Matrix, reduction to tri-diagonal form 115ff
Matrix, singular 111
Matrix, sparse 145 151
Matrix, tri-diagonal 151 175
Metropolis algorithm 210ff
Metropolis algorithm, auto-correlation 214 219
Metropolis algorithm, thermalization 214
Metropolis algorithm, trial step size 213
Minimization of chi-square 123
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