Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
Sornette D. — Critical phenomena in natural sciences | |
Taylor M.E. — Partial Differential Equations. Basic theory (vol. 1) | 202 |
Hunter J.K., Nachtergaele B. — Applied Analysis | 320 |
Grinstead C.M., Snell J.L. — Introduction to Probability | 325 |
Ross S.M. — Introduction to probability models | 74 |
Apostol T.M. — Calculus (vol 2) | 566 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 1) | 366, 1190, 1811 |
Hatrl D.L., Jones E.W. — Genetics: Principles and Analysis | 674 |
Stevens J.P. — Applied multivariate statistics for the social sciences | 262 |
Soong T.T. — Fundamentals of probability and statistics for engineers | 199—201 |
Falconer K. — Fractal Geometry. Mathematical Foundations and applications | 22, 238 |
Petrie A., Sabin C. — Medical Statistics at a Glance | 26 |
Doi M., Edwards S.F. — The theory of polymer dynamics | 13 |
Press W.H., Teukolsky S.A., Vetterling W.T. — Numerical recipes in FORTRAN77 | 652f. |
Ito K. — Encyclopedic Dictionary of Mathematics. Vol. 2 | 250.B |
Devroye L. — Generation of non-uniform random variates | 21, 136, 222 |
Falconer K. — Fractal Geometry: Mathematical Foundations and Applications | 24, 259 |
Rockett A.M., Szusz P. — Continued Fractions | 167 |
Meyn S.P., Tweedie R.L. — Markov Chains and Stochastic Stability | 411 |
Fishman G.S. — Monte Carlo: concepts, algorithms, and applications | 8, 22, 29, 501 |
Good P.I., Hardin J.W. — Common Errors in Statistics : (and How to Avoid Them) | 98—99 |
Gray R.M., Davisson L.D. — Introduction to statistical signal processing | 199, 235 |
McComb W.D. — Physics of Fluid Turbulence | 531 |
Blei R. — Analysis in Integer and Fractional Dimensions | 284, 322, 329, 330, 335, 336, 343 (Exercise 31), 345 (Hint 3) |
Tennekes H., Lumley J.L. — A First Course in Turbulence | 216, 225, 231 |
Miranker W.L. — Numerical Methods for Stiff Equations and Singular Perturbation Problems | 174 |
Frey B. — Statistics Hacks | |
Rao C.R., Toutenberg H. — Linear models: least squares and alternatives | 310 |
Peebles P.Z. — Probability, random variables, and random signal principles | 105—108 |
Myers J.L., Well A.D. — Research design and statistical analysis | 103 |
Hyvarinen A. — Independent Component Analysis | 34, 166 |
Wedgwood I. — Lean Sigma: A Practitionaer's Guide | |
Föllmer H., Schied A. — Stochastic finance | 387 |
Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 2) | 366, 1190, 1811 |
Clote P., Backofen R. — Computational Molecular Biology | 31 |
Liboff R. — Kinetic Theory | 54, 172, 270 |
Bach E., Shallit J. — Algorithmic Number Theory (òîì 1) | 256 |
Frisch U. — Turbulence. The legacy of A.N. Kolmogorov | 51 |
Parisi G. — Statistical field theory | 113, 323 |
Chorin A., Marsden J. — A Mathematical Introduction to Fluid Mechanics | 84 |
Leslie D.C. — Developments in the theory of turbulence | 41 |
Peters E.E. — Fractal Market Analysis: Applying Chaos Theory to Investment and Economics | 53, 198, 221, 307 |
Peters E.E. — Chaos and Order in the Capital Markets | 17, 20, 61, 231 |
Bollinger J. — Bollinger on Bollinger Bands | 69 |
Folland J.B. — Real Analysis: Modern Techniques and Their Applications | 326 |
Loeve M. — Probability Theory (part 2) | 321, 322 |
Govindarajulu Z. — Sequential Statistics | 96 |
Mukamel S. — Principles of Nonlinear Optical Spectroscopy | 209, 224 |
Grimmett G. — Percolation | 196, 231, 253, 309, 311 |
Skorokhod A.V., Prokhorov Y.V. (Ed) — Basic Principles and Applications of Probability Theory | 132, 202 |
Mahmoud H.M. — Evolution of random search trees | 40—41 |
Hamilton J.D. — Time Series Analysis | 185—186 |
Honerkamp J. — Statistical Physics | 36 |
Kolassa J.E. — Series Approximation Methods in Statistics | 31, 40, 166 |
Stevens J.P. — Intermediate Statistics: A Modern Approach | 57 |
Fogiel M. — The Operations Research Problem Solver | 8—31 |
Zimand M. — Computational Complexity: A Quantitative Perspective | 317 |
Duffie D., Singleton K.J. — Credit Risk. Pricing, Measurement and Management | 324 |
Kyburg H.E., Teng Ch.M. — Uncertain Inference | 64 |
Lovelock D., Mendel M., Wright A.L. — Introduction to the Mathematics of Money: Saving and Investing | 270 |
Heermann D.W. — Computer Simulation Methods in Theoretical Physics | 64 |
Balakrishnan N., Nevzorov V.B. — A Primer on Statistical Distributions | 228 |
Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 1071 |
Serre D. — Handbook of Mathematical Fluid Dynamics, Vol. 1 | 251, 253—255, 261 |
Kanatani K. — Statistical Optimization for Geometric Computation: Theory and Practice | 25, 71, 93, 429 |
Salicone S. — Measurement Uncertainty: An Approach Via the Mathematical Theory of Evidence | 8 |
Resnick S.I. — A probability path | 1, 253, 270, 282—284, 287, 294, 302, 313 |
Wise G.L., Hall E.B. — Counterexamples in Probability and Real Analysis | 171, 173 |
Nickerson R. — Cognition and Chance The Psychology of Probabilistic Reasoning | 245—246 |
Comtet L. — Advanced Combinatorics. The Art of Finite and Infinate Expansions | 281 |
Hunt P.J., Kennedy J. — Financial Derivatives in Theory and Practice | 23 |
Ben-Zvi D. — The Challenge of Developing Statistical Literacy, Reasoning and Thinking | 112, 170, 258, 259, 296, 298, 299, 303—305, 311—316, 357—400 |
Schenk C.A., Schueller G.I. — Uncertainty Assessment of Large Finite Element Systems | 40 |
Loeve M. — Probability Theory (part 1) | 321, 322 |
Gershenfeld N. — The Nature of Mathematical Modelling-Neil Gershenfeld | 49, 117 |
Gut A. — Stopped Random Walks: Limit Theorems and Applications | 1, 7, 8, 15, 17, 18, 29, 36, 38, 55, 61, 72, 85, 92—96, 102, 108, 111—114, 130, 137, 147, 168—169 |
Szekely G.J. — Paradoxes in probability theory and mathematical statistics | I/10 |
Kemeny T., Snell J.L., Thompson G. — Introduction to finite mathematics | 277 |
Granville A. (ed.), Rudnick Z. (ed.) — Equidistribution in Number Theory, an Introduction | 16, 21 |
Ross S. — A First Course in Probability | 204—205, 399 |
Rockmore D. — Stalking the Riemann Hypothesis: The Quest to Find the Hidden Law of Prime Numbers | 100—104 |
Weickert J. — Visualization and Processing of Tensor Fields: Proceedings of the Dagstuhl Workshop | 110 |
Galwey N.V. — Introduction to Mixed Modelling: Beyond Regression and Analysis of Variance | 62 |
Bolstad W.M. — Introduction to Bayesian Statistics | 132, 199 |
Finch S.R. — Mathematical constants | 154, 158, 264, 279, 320, 366 |
Sandor J., Mitrinovic D.S., Crstici B. — Handbook of Number Theory II | 344, 402, 423 |
Khuri A.I. — Advanced calculus with applications in statistics | 120, 516 |
Gudder S.P. — Stochastic methods in quantum mechanics | 24, 27 |
Stone C.J.D. — Course in Probability and Statistics | 158—160 |
Lad F. — Operational Subjective Statistical Methods. A Mathematical, Philosophical, and Historical Introduction | 401 |
Petrov V.V. — Sums of Independent Random Variables | 93 |
Smith S.W. — Digital Signal Processing | 30, 135—136, 407 |
Barlow R. — Statistics: A Guide and Reference to the Use of Statistical Methods in the Physical Sciences | 49—51 |
Chorin A.J. — Vorticity and turbulence | 29—30 |
Eubank R.L. — Nonparametric regression and spline smoothing | 6, 104 |
Shreve S.E. — Stochastic Calculus for Finance 2 | 89 |
Hartl D.L., Jones E.W. — Genetics: Principles and Analysis | 674 |
Spiegel M.R., Stephens L.J. — Schaum's outline of theory and problems of statistics | 182 |
Kadanoff L.P. — Statistical physics | 35, 90 |
Najim K., Ikonen E., Daoud A.-K. — Stochastic processes. Estimation, optimization and analysis | 101 |
Purdom R.W., Brown C.A. — The analysis of algorithms | 458—459 |
Baxter M., Rennie A. — Financial calculus | 42, 47, 48 |
Dorlas T.C. — Statistical mechanics, fundamentals and model solutions | 117, 159, 237 |
Fukunaga K. — Introduction to Statistical Pattern Recognition | 17 |
Slade G. — The Lace Expansion and Its Applications | 3 |
Ito K. — Encyclopedic Dictionary of Mathematics | 250.B |
Gnedenko B.V., Kolmogorov A.N. — Limit Distributions for Sums of Independent Random Variables | 3, 4 (see also “Normal distribution”) |
Katayama T., Sugimoto S. — Statistical Methods in Control and Signal Processing | 187, 193, 205 |
Mukamel S. — Principles of nonlinear spectroscopy | 209, 224 |
Takezawa K. — Introduction to Nonparametric Regression | 12, 407 |
Shiryaev A.N. — Probability | 4, 322, 326, 348 |
Kannan D. (ed.), Lakshmikantham V. (ed.) — Handbook of stochastic analysis and applications | 372 |
Jahne B. — Digital Image Processing | 90 |
Schroeder M.R. — Schroeder, Self Similarity: Chaos, Fractals, Power Laws | 157, 160 |
Elliot P.D.T.A. — Probabilistic Number Theory One | 218 |
Duffie D. — Security Markets. Stochastic Models | 9, 243 |
Haake F. — Quantum signatures of chaos | 86, 312 |
Feller W. — Introduction to probability theory and its applications (volume 1) | 244, 254, 261 |
Bernardo J.M., Smith A.F.M. — Bayesian Theory | 126 |
Kubo R., Toda M., Hashitsume N. — Statistical physics II. Nonequilibrium statistical mechanics | 9, 13, 28 |
Kammler D.W. — First Course in Fourier Analysis | 771—775 |
Shanbhag D.N. (ed.), Rao C.R. (ed.) — Stochastic Processes - Modelling and Simulation | 541 |
Norman G.R., Streiner D. — Biostatistics: the bare essentials | 24 |
Bingham N.H., Goldie C.M., Teugels J.L. — Regular variation | 344, 353 |
Heer C.V. — Statistical Mechanics: Kinetic, Theory and Stochastic Process | 87—89 |
Aoki K. — Nonlinear dynamics and chaos in semiconductors | 363—364, 368 |
Lyons R.G. — Understanding Digital Signal Processing | 438—439 |
Kubo R. — Statistical Mechanics: An Advanced Course with Problems and Solutions | 105 |
Kannan D. — An introduction to stochastic processes | 16 |
Baladi V. — Positive Transfer Operators And Decay Of Correlations | ix, 168 |
Bardou F., Bouchaud J., Aspect A. — Levy statistics and laser cooling | 3, 24—25, 43 |
Arnold B.C., Balakrishnan N., Nagaraja H.N. — A First Course in Order statistics | 205, 247 |
Rockmore D. — Stalking the Riemann Hypothesis | 100—104 |
Montgomery D.C. — Introduction to Statistical Quality Control | 65 |
Hans-Jürgen Stöckmann — Quantum Chaos: An Introduction | 146, 232, 240 |
Balakrishnan N. (ed.), Rao C.R. (ed.) — Advances in Reliability | 18 |
McComb W. D. — The Physics of Fluid Turbulence | 531 |
Baglivo J.A. — Mathematica Laboratories for Mathematical Statistics: Emphasizing Simulation and Computer Intensive Methods | 61 |
Feller W. — Introduction to probability theory and its applications (Volume II) | 258—265, 287, 291, 529—530 |
Kenzel W., Reents G., Clajus M. — Physics by Computer | 191 |
Duda R.O., Hart P.E., Stork D.G. — Pattern Classification | 23 |
Kempthorne O. — Design and Analysis of Experiments, Introduction to Experimental Design, Vol. 1 | 148 |
Huang K. — Introduction to Statistical Physics | 233, 246 |
Accetta J.S., Shumaker D.L. — Electro-Optical Systems Handbook | 38—39 |
Billingsley P. — Probability and Measure | 300, 366, 27.14, 27.15, 387, 398.408, 34.17.497 |
Gardiner C.W.W., Haken H. — Handbook of Stochastic Methods: For Physics, Chemistry and the Natural Sciences | 37 |
Lebowitz J.L., Montroll E.W. — Nonequilibrium phenomena II. From stochastics to hydrodynamics | 34 |
Wong K. — Asymptotic Approximations of Integrals | 141 |
Lipschutz S. — Schaum's Outline of Probability | 108 |
Kullback S. — Information theory and statistics | 101, 105 |
Pinsky M.A. — Introduction to Fourier Analysis and Wavelets | 260 |
Jain A.K., Dubes R.C. — Algorithms for clustering data | 157 |
De Finetti B. — Theory of probability (Vol. 2) | 44—70 |
Nicolis G., Prigogine I. — Self-organization in nonequilibrium systems | 227 |
Antia H.M. — Numerical Methods for Scientists and Engineers | 250 |
Young R.M. — Excursions in Calculus: An Interplay of the Continuous and the Discrete | 214 |
Kreyszig E. — Advanced engineering mathematics | 1057 |
Steele M.J. — Stochastic Calculus and Financial Applications | 279 |
Mazo R.M. — Brownian Motion: Flucuations, Dynamics, and Applications | 22, 24, 25, 33, 37, 45, 153, 155, 157 |
Ash R.B., Doléans-Dade C.A. — Probability and Measure Theory | 290ff., 343 |
Cox D.R., Snell E.J. — Analysis of Binary Data | 212 |
Elliot P.D.T.A. — Probabilistic Number Theory Two: Central Limit Theorems | 218, 18, 24 |
West B.J., Bologna M., Grigolini P. — Physics of Fractal Operators | 5, 226 |
Kotz S., Johnson N.L. — Breakthroughs in Statistics: Volume 1: Foundations and Basic Theory | 321, 326 |
Goodman J.W. — Statistical Optics | 31—33 |
Bernard P.S., Wallace J.M. — Turbulent Flow: Analysis, Measurement and Prediction | 432 |
Bowman A.W., Azzalini A. — Applied Smoothing Techniques for Data Analysis: The Kernel Approach with S-Plus Illustrations | 26, 75 |
Bosq D. — Nonparametric statistics for stochastic processes | 34 |
Prigogine I. — From being to becoming: time and complexity in the physical sciences. | 148 |
Emanuel Parzen — Stochastic processes (Classics in Applied Mathematics) | 19, 101, 141, 267, 269 |
Arwini K. — Information Geometry: Near Randomness and Near Independence | 9, 116, 166 |
Roe B.P. — Probability and Statistics in Experimental Physics | 42, 58, 60, 90, 93, 95, 96, 98, 99 |
Cantu-Paz E. — Efficient and accurate parallel genetic algorithms | 18 |
Sachkov V.N. — Probabilistic Methods In Combinatorial Analysis | 21, 22 |
Balakrishnan N. (ed.), Rao C.R. (ed.) — Order Statistics - Theory and Methods | 341, 536, 548, 553, 580 |
Wilkinson L., Wills G., Rope D. — The Grammar aof Graphics | 457 |
Accardi L., Lu Y.G., Volovich I. — Quantum Theory and Its Stochastic Limit | 30 |
Little R.J.A., Rubin D.B. — Statistical analysis with missing data | 52, 85 |
Tsang L., Kong J.A., Ding K.- H. — Scattering of electromagnetic waves (Vol 1. Theories and applications) | 133, 135 |
Kao E. — Introduction to Stochastic Processes | 128, 401 |
Efron B., Tibshirani R. — An introduction to bootstrap | 40 |
Accetta J.S. (ed.), Shumaker D.L. (ed.), Robinson S.R. (ed.) — The Infrared & Electro-Optical Systems Handbook. Volume 8: Emerging Systems and Technologies | 43 |
Spiegel M.R. — Schaum's outline of theory and problems of probability and statistics | 112, 113, 130, 131, 158, 260 |
Drmota M., Tichy R.F. — Sequences, Discrepancies and Applications | 96 |
Korner T.W. — Exercises in Fourier Analysis | 51 |
Neter J., Kutner M.H., Wasserman W. — Applied Linear Regression Models | 6 |
Kotz S. — Breakthroughs in Statistics (volume 3) | 393 |
Doukhan P. — Mixing. Properties and examples | 45 |
Rao M.M., Swift R.J. — Probability Theory With Applications | 292 |
Petrov V.V. — Limit theorems of probability theory | 118, 120, 142, 169 |
van Dijk N. — Handbook of Statistics 16: Order Statistics: Theory & Methods | 341, 536, 548, 553, 580 |
De Finetti B. — Theory of Probability. A critical introductory treatment(vol. 2) | 44—70 |
Socha L. — Linearization Methods for Stochastic Dynamic Systems | 40 |
Jacod J., Shiryaev A. — Limit Theorems for Stochastic Processes | 416, 444—455, 470—478 |
Rosenblatt M. — Random processes | 22ff., 33ff., 85ff., 97, 200 |
Press W.H., Teukolsky S.A., Vetterling W.T. — Numerical recipes in Fortran 90 | 652f. |
Marks R.J.II. — The Joy of Fourier | 6, 9, 158, 177, 179, 180, 197-200, 202, 203, 209 |
Lindenstrauss J., Tzafriri L. — Classical Banach Spaces I, II | 135, 136 |
Riley, Hobson — Mathematical Methods for Physics and Engineering | 1036—1038, 1178 |
Callen H. — Thermodynamics and an Introduction to Thermostatistics | 456 |
Landgrebe D.A. — Signal Theory Methods in Multispectral Remote Sensing | 115 |
Mandel L., Wolf E. — Optical Coherence and Quantum Optics | 30 |
Gnedenko B.V., Kolmogorov A.N., Chung K.L. — Limit Distributions for Sums of Independent Random Variables. Revised Edition | 3, 4, see also "Normal distribution" |
Yoo T.S. (ed.) — Insight into Images: Principles and Practice for Segmentation, Registration, and Image Analysis | 30 |
Haken H. — Synergetics: an introduction | 39 |
Weaver H.J. — Applications of discrete and continous Fourier analysis | 350, 354 |
DeGroot M.H. — Optimal statistical decisions | 37 |
Gallavotti G. — Foundations of fluid mechanics | 405 |
Myler H.R., Weeks A.R. — Computer imaging recipes in C | 169, 202 |
Dym H., McKean H.P. — Fourier Series and Integrals | 114—116, 142 |
Papadopoulos G.J. (ed.), Devreese J.T. (ed.) — Path integrals and their applications in quantum, statistical, and solid state physics | 456, 471 |
Lena P., Lebrun F. — Observational Astrophysics (Astronomy and Astrophysics Library Series) | 441 |
Mitchell T.M. — Machine Learning | 133, 142—143, 167 |
Jaisingh L.R. — Statistics for the utterly confised | 189 |
Reif F. — Fundamentals of statistical and thermal physics | 39 |
Grimmett G., Welsh D. — Probability: An Introduction | 130, 136 |
Neuenschwander D. — Probabilities on the Heisenberg Group: Limit Theorems and Brownian Motion, Vol. 163 | 19, 38, 73, 79 |
Kuttler K.L. — Modern Analysis | 338 |
Niederreiter H. — Random number generation and quasi-Monte Carlo methods | 5 |
Kambhampati D. (ed.) — Protein Microarray Technology | 225 |
Richards P.I. — Manual of Mathematical Physics | 426 |
Podgorsak E. — Radiation Physics for Medical Physicists | 58, 136 |
Khinchin A.Y. — Mathematical Foundations Of Quantum Statistics | 18 |
Varga R.S. — Scientific Computations on Mathematical Problems and Conjectures | 113 |
Gould H., Tobochnik J., Christian W. — An introduction to computer simulation methods | 213—215 |
Huang N.E., Shen S.S. — The Hilbert-Huang transform and its applications | 114 |
Ercolani N.M., Gabitov I.R., Levermore C.D. — Singular limits of dispersive waves | 233 |
Mathews J., Walker R.L. — Mathematical methods of physics | 383 |
Ash R. — Basic probability theory | 169ff, 171 |
Jeffreys H. — Theory of probability | 79 |
Lauterborn W., Kurz T. — Coherent optics | 77 |
Lauterborn W., Kurz T. — Coherent optics | 77 |
Coffey W.T., Kalmykov Yu.P., Waldron J.T. — The Langevin equation | 56 |
Bickel P., Doksum K. — Mathematical statistics | 470 |
Marder M.P. — Condensed matter physics | 112 |
Arratia R., Barbour A.D., Tavare S. — Logarithmic Combinatorial Structures: A Probabilistic Approach | 103 |
Macmillan N., Creelman D. — Detection Theory: A User's Guide | 352 |
Percival D.B., Walden A.T. — Wavelet methods for time series analysis | 434 |
Schurmann M. — White Noise on Bialgebras | 130 |
Greene D.H., Knuth D.E. — Mathematics for the analysis of algorithms | 75—78 |
Greene D.H., Knuth D.E. — Mathematics for the analysis of algorithms | 71—74 |
Devroye L. — Non-Uniform Random Variate Generation | 21, 136, 222 |
Wong R. — Asymptotic approximations of integrals | 141 |
Paulos J.A. — A Mathematician Plays the Stock Market | 140 |
Percival D., Walden A. — Spectral Analysis for Physical Applications | 459 |
Kendall M.G. — The advanced theory of statistics (vol. 2) | see "Convergence in Probability" |
Stacey W. — Nuclear reactor physics | 368 |
Cooper R.B. — Introduction to queueing theory | 290 |
Chernick M.R., Friis R.H. — Introductory Biostatistics for the Health Sciences : Modern Applications Including Bootstrap | 141, 143 |
Allen A. — Probability, statistics, and queueing theory with computer science applications | 158—164 |
Arnold L. (Ed), Wihstutz V. (Ed) — Lyapunov Exponents: Proceedings of a Workshop Held in Bremen | 120, 157 |
Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 566 |
Richard A. DeFusco CFA, McLeavey D.W., Runkle D.E. — Quantitative Methods For Investment Analysis | 292—295, 328 |
Hartmann A.K., Rieger H. — Optimization Algorithms in Physics | 330 |
Pier J.-P. — Mathematical Analysis during the 20th Century | 315 |
Grimaldi R.P., Rothman D.J. — Discrete and Combinatorial Mathematics: An Applied Introduction | 188 |
Williams D. — Probability with Martingales | (18.4) |
Hamilton J.D. — Time Series Analysis | 185—186 |
Smith W.J. — Modern Lens Design: A Resource Manual | 437 |
Hodges J. L., Lehmann E. L. — Basic Concepts Of Probability And Statistics | 187, 192, 402 |
Hassani S. — Mathematical Methods: for Students of Physics and Related Fields | 809 |
Kloeden P/, Platen E., Schurz H. — Numerical solution of SDE through computer experiments | 30, 32 |
Borovskikh Y.V. — Random permanents | 122, 147, 178 |
Haile J.M. — Molecular Dyanmics Simualtion: Elementary Methods | 78, 98, 143—144 |
Haile J.M. — Molecular Dyanmics Simualtion: Elementary Methods | 78, 98, 143—144 |
Drmota M., Flajolet P., Gardy D. — Mathematics and computer science 3. Algorithms, trees, combinatorics and probabilities | 73, 149 |
Gerald C.H. — Electro–optical imaging iystem performance | 104, 126 |
Crisanti A., Paladin G., Vulpiani A. — Products of random matrices in statistical physics | 22 |
Kardar M. — Statistical physics of fields | 2, 22, 213 |
D.E. Newland — An Introduction to Random Vibration, Spectral and Wavelet Analysis | 80 |
Rice J.A. — Mathematical statistics and data analysis | 169 |
Vanmarcke Erik — Random Fields : Analysis and Synthesis | 55—56, 195, 215 |
Dym H., McKean H. — Fourier Series and Integrals (Probability & Mathematical Statistics Monograph) | 114—116, 142 |
Achdou Y., Pironneau O. — Computational methods for option pricing | 11 |
Addison P.S. — Fractals and chaos | 63 |
Hammerlin G., Hoffmann K.-H., Schumaker L.L. — Numerical Mathematics | 327 |
Wiedemann H. — Particle Accelerator Physics I: Basic Principles and Linear Beam Dynamics | 236, 350 |
Yao W-M — Review of particle physics | 299 |
Kendall M.G. — The advanced theory of statistics (vol. 1) | 180—183 |
Falconer K. — Fractal geometry: mathematical foundations and applications | 24, 259 |
Mason P.L. — Multivariate Statistical Process Control with Industrial Application | 107 |
Fuchssteiner B., Lusky W. — Convex Cones (North-Holland Mathematics Studies) | 371 |
Reichl L.E. — Modern Course in Statistical Physics | 174 |
Clarke C.L.A., Cormack G.V. — Information Retrieval: Implementing and Evaluating Search Engines | 431, 439 |
Mathews J., Walker R.L. — Mathematical Methods of Physics | 383 |
Hogg R.V., Craig A.T. — Introduction to Mathematical Statistics | 246, 511 |
Grimaldi R.P. — Student Solutions Manual for Discrete and Combinatorial Mathematics | 188 |
Lipparini E. — Modern many-particle physics: atomic gases, quantum dots and quantum fluids | 175 |
Larsen R.J., Marx M.L. — Introduction to Mathematical Statistics and Its Applications, An (4th Edition) | 292—294, 302—307 |
Honerkamp J. — Statistical physics: an advanced approach with applications | 36 |
Edwards D.A., Syphers M.J. — An introduction to the physics of high energy accelerators | 264, 278 |
Billingsley P. — Convergence of Probability Measures | 42, 72 |
Hoel P. — Introduction to Mathematical Statistics | 145 |
H. Fehske, R. Schneider, A. Weile — Computational Many-Particle Physics | 66, 102, 380 |