| Êíèãà | Ñòðàíèöû äëÿ ïîèñêà |
| Kedlaya K.S., Poonen B., Vakil R. — The William Lowell Putnam Mathematical Competition 1985–2000: Problems, Solutions, and Commentary | 95 |
| Bump D. — Algebraic Geometry | 206 |
| Reed M., Simon B. — Methods of Modern mathematical physics (vol. 1) Functional analysis | 276 |
| Apostol T.M. — Calculus (vol 2) | 127, 310 |
| Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 1) | 663, 927, 958 |
| Lee J.S., Miller L.E. — CDMA systems engineering handbook | 93—94 |
| Shorack G.R. — Probability for statisticians | 191, 369 |
| Bazant Z.P., Cedolin L. — Stability of structures : elastic, inelastic, fracture, and damage theories | 199 |
| Ogata K. — Modern Control Engineering | 900 |
| Nathanson M.B. — Elementary methods in number theory | 108, 404 |
| Apostol T.M. — Mathematical Analysis | 378 |
| Gilbert J., Murray M. — Clifford Algebras and Dirac Operators in Harmonic Analysis | 6 |
| Brauer F., Nohel J.A. — The qualitative theory of ordinary differential equations | 264 |
| Haerdle W., Simar L. — Applied multivariate statistical analysis | 65 |
| Heyde C.C. — Quasi-likelihood and its application: a general approach to optimal parameter estimation | 130 |
| Eisenbud D., Harris J. — The Geometry of Schemes | 53 |
| Korsch H.J., Jodl H.-J. — Chaos: A Program Collection for the PC | 41 |
| Golub G.H., van Loan C.F. — Matrix Computations | 394 |
| Barth W., Peters C., Van de Ven A. — Compact complex surfaces | 14-16 |
| Bump D. — Algebraic Geometry and the Theory of Curves | 206 |
| Goldman R., Krasauskas R. — Topics in algebraic geometry and geometric modeling | 29, 189 |
| Rencher A.C. — Methods of multivariate analysis | 19 |
| Rao C.R., Toutenberg H. — Linear models: least squares and alternatives | 365 |
| Coxeter H.S.M. — Non-Euclidean Geometry | 86, 124, 284 |
| Hoffman K., Kunze R. — Linear algebra | 273, 368 |
| Baker A. — Matrix Groups: An Introduction to Lie Group Theory | 227 |
| Lutkepohl H. — Handbook of Matrices | 12, 269 |
| Dickson L.E. — Algebraic invariants | 10, 14, 48, 84 |
| Dolgachev I. — Lectures on Invariant Theory | 4 |
| Meyer C.D. — Matrix analysis and applied linear algebra | 567 |
| Silverman J.H. — The arithmetic of elliptic curves | 88, 131, 219, 227, 231, 232, 233, 239, 274 |
| Garnett J.B. — Bounded Analytic Functions | 7 |
| Graham R.L., Grotschel M., Lovasz L. — Handbook of combinatorics (vol. 2) | 663, 927, 958 |
| Takesaki M. — Theory of Operator Algebras III | 504 |
| Takesaki M. — Theory of Operator Algebras II | 472 |
| Lauwerier H.A. — Calculus of variations in mathematical physics | 5, 6 |
| Newman M. — Integral Matrices | 56, 201 |
| Williamson R.E., Crowell R.H., Trotter H.F. — Calculus of vector functions | 236 |
| Naber G.L. — The geometry of Minkowski spacetime: an introduction to the mathematics of the special theory of relativity | 7 |
| Opechowski W. — Crystallographic and metacrystallographic groups | 96 |
| Szego G. — Orthogonal polynomials | 24, 123, 187, 366 |
| Rotman J.J. — An Introduction to the Theory of Groups | 244 |
| Artin M. — Algebra | 256 |
| Levine I.N. — Molecular Spectroscopy | 92—93, 200—201, 238 |
| Debnath L., Mikusinski P. — Introduction to Hilbert Spaces with Applications | 143 |
| Hand L.N., Finch J.D. — Analytical Mechanics | 22, 351, 29 (prob) |
| Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume III: Analysis | 321, 326 |
| Behnke H., Bachmann F., Fladt K. — Fundamentals of Mathematics, Volume I: Foundations of Mathematics: The Real Number System and Algebra | 268 |
| Hancock H. — Theory of Maxima and Minima | 19 |
| Bitsadze A.V. — Equations of mathematical physics | 15 |
| Kythe P.K., Schaferkotter M.R. — Partial Differential Equations and Mathematica | 6ff |
| Kay S.M. — Intuitive Probability and Random Processes using MATLAB | 280, 790 |
| Gracia-Bondia J.M., Varilly J.C., Figueroa H. — Elements of Noncommutative Geometry | 173, 503 |
| Rencher A.C., Barnett V., Bradley R.A. (Ed) — Multivariate Statistical Inference and Applications | 48—49, 404 |
| Liao X., Wang L., Yu P. — Stability of Dynamical Systems, Vol. 5 | 260, 269, 341, 500 |
| Halmos P.R. — Hilbert Space Problem Book | 1 |
| Garnett J.B. — Bounded Analytic Functions | 7 |
| Eisenbud D. — Computations in Algebraic Geometry with Macaulay 2 | 113, 121 |
| Huybrechts D., Lehn M. — The Geometry of Moduli Spaces of Sheaves | 155, 156 |
| Hughes D.R., Piper F.C. — Projective Planes | 48 |
| Balakrishnan N., Nevzorov V.B. — A Primer on Statistical Distributions | 259—261 |
| Cartier P., Julia B., Moussa P. — Frontiers in Number Theory, Physics, and Geometry II | 250, 257 |
| Borwein P., Choi S., Rooney B. — The Riemann Hypothesis | 233, 337 |
| Freitag E., Kiehl R. — Etale cohomology and the Weil conjecture | 175, 181 |
| Torretti R. — Relativity and Geometry | 303 note 1 |
| Polyanin A., Manzhirov A.V. — Handbook of Mathematics for Engineers and Scientists | 216, 840 |
| Steele J.M. — Cauchy-Schwarz Master Class: An Introduction to the Art of Mathematical Inequalities | 228 |
| Reid M., Szendroi B. — Geometry and Topology | 5, 9, 42, 123, 150, 151, 183 |
| Lectures on invariant theory | 4 |
| Kohonen T. — Self-organizing maps | 14 |
| Jang J.-S.R., Sun Ch.-T., Muzutani E. — Neuro-Fuzzy and Soft Computing | 101, 134, 148, 154 |
| Lam T.Y. — A first course in noncommutative ring theory | 13 |
| Kanatani K. — Statistical Optimization for Geometric Computation: Theory and Practice | 41 |
| Everest G., Ward T. — An Introduction to Number Theory | 225 |
| Young R.M. — An Introduction to Non-Harmonic Fourier Series, Revised Edition | 157, 159 |
| Husemoller D. — Fibre Bundles | 154 |
| Engler A.J., Prestel A. — Valued Fields | 163 |
| Brouwer A.E., Cohen A.M., Neumaier A. — Distance-Regular Graphs | 290 |
| Cao Z.-Q., Kim K.H., Roush F.W. — Incline algebra and applications | 102 |
| Comtet L. — Advanced Combinatorics. The Art of Finite and Infinate Expansions | 300 |
| Yandell B. — The Honors Class: Hilbert's Problems and Their Solvers | 185, 214, 247—248, 308 |
| Lang S. — Diophantine Geometry | see “Neron — Tate” |
| Bhatti M. — Practical Optimization Methods | 106 |
| Kline M. — Mathematical Thought from Ancient to Modern Times, Vol. 1 | 799—800 |
| Lounesto P., Hitchin N.J. (Ed), Cassels J.W. (Ed) — Clifford Algebras and Spinors | 195 |
| Chevalley C., Cartier P. — Algebraic Theory of Spinors and Clifford Algebras: Collected Works of Claude Chevalley. Volume 2 | 35 |
| Bronson R. — Schaum's Outline of Matrix Operations | 144 |
| Reed M., Simon B. — Methods of Functional Analysis (in 4 volumes). Volume 1: Functional Analysis | 276 |
| Steenrod N.E. — The Topology of Fibre Bundles | 204 |
| Mumford D., Wright D., Series C. — Indra's Pearls: The Vision of Felix Klein | 209 |
| Khuri A.I. — Advanced calculus with applications in statistics | 39 |
| Cohen H.A. — A Course in Computational Algebraic Number Theory | 79, 225 |
| Polya G. — Problems and Theorems in Analysis: Theory of Functions. Zeros. Polynomials. Determinants. Number Theory. Geometry | 100 |
| Streater R.F. (Ed) — Mathematics of Contemporary Physics | 17, 41, 87, 212, 219, 96, 99, 100, 212 |
| Vapnik V. — Estimation of dependences based on empirical data | 245 |
| Lang S.A. — Undergraduate Analysis | 413 |
| Sinha S.M. — Mathematical Programming: Theory and Methods | 56 |
| Kline M. — Mathematical Thought from Ancient to Modern Times, Vol. 3 | 799—780, see also Law of inertia |
| Lang S. — Real Analysis | 167 |
| Coxeter H.S.M. — Introduction to Geometry | 119 |
| Takezawa K. — Introduction to Nonparametric Regression | 483 |
| Hale J.K., Kocak H. — Dynamics and Bifurcations | 125, 239, 279, 283 |
| Lin I.H. — Geometric Linear Algebra. Vol. 1 | 304, 455 |
| Giorgi G., Thierfelder J. — Mathematics of Optimization: Smooth and Nonsmooth Case | 14, 206, 217 |
| Robinson D.J.S. — A Course in Linear Algebra with Applications | 346 |
| Berger M., Pansu P., Berry J.-P. — Problems in Geometry | 13.A |
| Gallier J. — Geometric Methods and Applications: For Computer Science and Engineering | 289 |
| Greenberg M.D. — Advanced engineering mathematics | 589 |
| Craig J.J. — Introduction to Robotics Mechanic and Control | 208 |
| Karman T., Biot A.M. — Mathematical Methods in Engineering | 164 |
| Halmos P.R. — Finite-Dimensional Vector Spaces | 38 |
| Blyth T.S., Robertson E.F. — Further Linear Algebra | 131 |
| Kline M. — Mathematical Thought from Ancient to Modern Times, Vol. 2 | 799—880 (see also Law of inertia) |
| Helemskii A.Ya. — Lectures and Exercises on Functional Analysis, Vol. 233 | 66, 336 |
| Brocker Th., Dieck T.T. — Representations of Compact Lie Groups | 54 |
| Chabert J.-L., Weeks C., Barbin E. — A History of Algorithms: From the Pebble to the Microchip | 291, 294, 305, 420, 422 |
| Strichartz R.S. — The way of analysis | 441, 606 |
| Shapira Y. — Solving PDEs in C++: numerical methods in a unified object-oriented approach | 253, 255, 261 |
| Eisenhart L.P. — A Treatise on the Differential Geometry of Curves and Surfaces | see “Fundamental” |
| Bamberg P.G., Sternberg Sh. — A Course in Mathematics for Students of Physics: Volume 1 | 133 |
| Levi-Civita T. — The Absolute Differential Calculus (Calculus of Tensors) | 66 |
| Köthe G. — Topological vector spaces I | 122 |
| O'Neill B. — Semi-Riemannian Geometry: With Applications to Relativity | 47 |
| Dubrovin B.A., Fomenko A.T., Novikov S.P. — Modern Geometry - Methods and Applications. Part 1. The Geometry of Surfaces, Transformation Groups and Fields | 17, 37 |
| Beckenbach E.F. (editor), Polya G., Lehmer D.H. and others — Applied combinatorial mathematics | 377 |
| Coxeter H.S.M. — Regular Polytopes | 142, 173—179, 192 (see also “a-form”, “Definite”, “Indefinite”, “Semi-definite”) |
| Kirillov A.A. — Elements of the Theory of Representations | 34 |
| Wilkinson J.H. — The algebraic eigenvalue problem | 27—28 |
| Berger M., Cole M. (translator) — Geometry I (Universitext) | 8.8.2, 4.0.5, 8.8.6, 9.5.5, 11.8.11.2, 13, 18.1.1 |
| Young R.M. — An Introduction to Nonharmonic Fourier Series | 157, 159 |
| Draxl P.K. — Skew fields | 105 |
| Jeffrey A., Taniuti T. — Mathematics in Science and Engineering: volume 9. Non-linear wave propagation | 323, 324 |
| Kenzel W., Reents G., Clajus M. — Physics by Computer | 32 |
| Kempthorne O. — Design and Analysis of Experiments, Introduction to Experimental Design, Vol. 1 | 128 |
| Grimmett G., Stirzaker D. — Probability and Random Processes | 115 |
| Reed M., Simon B. — Methods of Modern mathematical physics (vol. 2) Fourier analysis, self-adjointness | 276 |
| Bitsadze A.V. — Equations of Mathematical Physics | 15 |
| Li H., Gras G. — Class Field Theory: From Theory to Practice | 180, 192, 202, 387 |
| Searle S.R. — Matrix algebra useful for statistics | 73, 329 |
| Aczel J., Dhombres J. — Functional equations in several variables with applications to mathematics, information theory and to the natural and social sciences | 195 |
| Vanderbei R.J. — Linear Programming: Foundations and Extensions | 422 |
| Zong Ch. — Sphere packings | 19, 23, 25, 31, 34, 41, 47 |
| Kincaid D., Cheney W. — Numerical analysis: mathematics of scientific computing | 122 |
| Eisenhart L.P. — Continuous groups of transformations | 186, 207, 208, 226, 236 |
| Kullback S. — Information theory and statistics | 56, 386 |
| Fuhrmann P.A. — A Polynomial Approach to Linear Algebra | 189 |
| Mehta M.L. — Random Matrices | 26, 642 |
| Olver P.J., Shakiban C. — Applied linear. algebra | 88, 154, 163, 422, 463 |
| Bamberg P.G., Sternberg S. — A Course in Mathematics for Students of Physics, Vol. 1 | 133 |
| Burger E.B. — Exploring the Number Jungle: A Journey into Diophantine Analysis | 124 |
| Clemens C.H. — Scrapbook of Complex Curve Theory | 133 |
| Kreyszig E. — Advanced engineering mathematics | 353 |
| Daniel C. Mattis — The theory of magnetism made simple: an introduction to physical concepts and to some useful mathematical methods | 100, 141, 204, 303, 360, 380, 396, 419, 464, 474, 475, 478 |
| Tits J. — Buildings of Spherical Type and Finite BN-Pairs | 8.2.1 |
| Marques de Sa J.P. — Pattern recognition: concepts, methods, and applications | 32 |
| Iarrobino A., Kanev V. — Power Sums, Gorenstein Algebras, and Determinantal Loci | 18 |
| Bowman A.W., Azzalini A. — Applied Smoothing Techniques for Data Analysis: The Kernel Approach with S-Plus Illustrations | 87, 88, 92, 93, 98, 118, 119, 121, 125 |
| Graybill F.A. — Matrices with Applications in Statistics | 14, 273, Sec. 12.2 |
| Mac Lane S., Birkhoff G.D. — Algebra | 338, 343ff, 580 |
| Prestel A., Delzell C.N. — Positive Polynomials: From Hilbert's 17th Problem to Real Algebra (Springer Monographs in Mathematics) | see Form of degree 2$m$ |
| Lemmermeyer F. — Reciprocity Laws: From Euler to Eisenstein | 9, 21 |
| Miller K.S. — Complex stochastic processes | 33 |
| Roe B.P. — Probability and Statistics in Experimental Physics | 76, 77 |
| Lang S. — Real and Functional Analysis (Graduate Texts in Mathematics Series #142) | 107 |
| Manturov O.V., Matveev N.M. — A course of higher mathematics: linear algebra, analytic geometry, differential calculus of functions of one variable | 123, 360 |
| Curtis M.L. — Abstract Linear Algebra | 116 |
| Berg C., Christensen J.P., Ressel P. — Harmonic Analysis On Semigroups | 101, 234, 246 |
| Marcus M., Minc H. — Survey of matrix theory and matrix inequalities | 82 |
| Margenau H., Murphy G.M. — The mathematics of physics and chemistry | 317 |
| M.A.Akivis, V.V.Goldberg — Projective Differential Geometry of Submanifolds | 272, 277 |
| Craig J.J. — Introduction to Robotics: Mechanics and Control | 208 |
| Neter J., Kutner M.H., Wasserman W. — Applied Linear Regression Models | 215 |
| Bazaraa M.S., Sherali H.D., Shetty C.M. — Nonlinear Programming: Theory and Algorithms | 755 |
| Katznelson I., KatznelsonY.R. — A (Terse) Introduction to Linear Algebra (Student Mathematical Library) | 162 |
| Carl D. Meyer — Matrix Analysis and Applied Linear Algebra Book and Solutions Manual | 567 |
| Hilton H. — Homogeneous linear substitutions | 64 |
| Steenrod N. — The topology of fiber bundles | 204 |
| Greub W.H. — Linear Algebra | 245 |
| Socha L. — Linearization Methods for Stochastic Dynamic Systems | 34 |
| Herriot J.G. — Methods of mathematical analysis and computation | 88 |
| Grenander U. — Toeplitz Forms and Their Applications | 3 |
| Balakrishnan N., Rao C.R. — Handbook of Statistics (Vol. 17): Order Statistics: Applications | 203, 207, 242 |
| Nicholson W.K. — Linear Algebra with Applications | 313, 425 |
| Eisenbud D., Harris J. — The geometry of schemes (textbook draft) | 53 |
| Ryser H.J. — Combinatorial Mathematics | 108 |
| Reeves C.R., Rowe J.E. — Genetic Algorithms: Principles and Perspectives. A Guide to GA Theory | 158 |
| Milnor J., Husemoller D. — Symmetric Bilinear Forms | 22, 110 |
| Goffman C. — Calculus of several variables | 60 |
| Baeza R. — Quadratic Forms Over Semilocal Rings | 2 |
| Coxeter H.S.M. — The Real Projective Plane | 175 |
| Koblitz N. — Introduction to Elliptic Curves and Modular Forms | 176—177, 221 |
| Schechter M. — Operator methods in quantum mechanics | 61 |
| Slurmfels B. — Solving systems of polynomial equations | 20, 48, 87, 88, 90, 139 |
| Kythe P.K., Puri P. — Partial differential equations and Mathematica | 6ff |
| Antsaklis P.S., Michel A.N. — Linear Systems | 436 |
| Choquet-Bruhat Y., DeWitt-Morette C., Dillard-Bleick M. — Analysis, manifolds and physics. Part I. | 80 |
| Knus M.-A. — Quadratic and hermitian forms over rings | 25 |
| Gruber M.H.J. — Regression Estimators: A Comparative Study | 20, 22, 35, 36, 213, 270 |
| Coxeter H. — Regular polytopes | 142, 173—179, 192 (see also $a$-form, Definite, Indefinite, Semi-definite) |
| Finkbeiner D.T. — Introduction to Matrices and Linear Transformations | 182—191 |
| Birkhoff G., Mac Lane S. — A Survey of Modern Algebra | 283ff. |
| Chevalley C. — The Construction and Study of Certain Important Algebras | 33 |
| Synge J.L. — Relativity: The general theory | (see Metric) |
| Hille E. — Methods in classical and functional analysis | 42, 77, 333 |
| Audin M. — Geometry | 43, 225, 283 |
| van Lint J.H., Wilson R.M. — Course in Combinatorics | 63—65, 203, 317, 492 |
| Papadopoulos G.J. (ed.), Devreese J.T. (ed.) — Path integrals and their applications in quantum, statistical, and solid state physics | 128—129, 137, 405 |
| Hildebrand F.B. — Methods of Applied Mathematics | 36, 166 |
| Vladimirov V. S. — Equations of mathematical physics | 25 |
| Audin M. — Geometry | 43, 225, 283 |
| Collatz L. — The numerical treatment of differential equations | 174 |
| Meijer P.H.E. — Group Theory: The Application to Quantum Mechanics | 9 |
| Greub W.H. — Linear Algebra | 245 |
| Bornemann F. — Homogenization in Time of Singularly Perturbed Mechanical Systems (Lecture Notes in Mathematics, 1687) | 128 |
| Porteous I.R. — Clifford Algebras and the Classical Groups | 22 |
| Prestel A. — Lectures On Formally Real Fields | 1 5 |
| Leeuwen J.V. — Handbook of Theoretical Computer Science: Algorithms and Complexity | 639, 681 |
| Carroll R.W. — Mathematical physics | 104 |
| Lang S. — Undergraduate analysis | 413 |
| Beckenbach E.F., Bellman R. — Inequalities | 3 |
| Smart N.P. — The algorithmic resolution of Diophantine equations | 66, 171, 181, 186, 216 |
| Smart N.P. — The algorithmic resolution of Diophantine equations | 66, 171, 181, 186, 216 |
| Lounesto P. — Clifford algebras and spinors | 195 |
| Beckenbach E.F. (ed.) — Applied Combinatorial Mathematics | 377 |
| Leeuwen J. (ed.), Meyer A.R., Nivat M. — Algorithms and Complexity, Volume A | 639,681 |
| Kirillov A.A., Gvishiani A.D., McFaden H.H. — Theorems and Problems in Functional Analysis | 92 |
| Hsiung C.-C. — A first course in differential geometry | 21 |
| Loomis L.H., Sternberg S. — Advanced calculus | 112 |
| Lander E.S. — Symmetric design: an algebraic approach | 253 |
| Luenberger D.G. — Introduction to dynamic systems | 350—353 |
| Lane S.M. — Mathematics, form and function | 204 |
| Marder M.P. — Condensed matter physics | 527 |
| Dauns J. — A Concrete Approach to Division Rings | 11 |
| Boerner H. — Representations of Groups | 10 |
| Humphreys J.E. — Arithmetics Groups | 39 |
| Cloud M.J., Drachman B.C. — Inequalities: with applications to engineering | 94 |
| Kotz S., Johnson N.L. — Breakthroughs in Statistics: Volume 2: Methodology and Distribution | 168, 241 |
| Behnke H., Bachmann F., Fladt K. — Fundamentals of mathematics. Volume III. Analysis | 321, 326 |
| Veselic I. — Integrated density of states and Wegner estimates for random Schrodinger operators | 14, 22 |
| Intriligator M.D. — Mathematical optimization and economic theory | 495—496 |
| Wrede R.C., Spiegel M. — Theory and problems of advanced calculus | 206 |
| Lang S. — Linear Algebra | 220, 224 |
| Apostol T.M. — Calculus (Volume 2): Multi-Variable Calculus and Linear Algebra with Applications | 127, 310 |
| Zeidler E. — Oxford User's Guide to Mathematics | 630 |
| Schott J.R. — Matrix Analysis for Statistics | 15—16 |
| Pier J.-P. — Mathematical Analysis during the 20th Century | 84 |
| Rektorys K. — Survey of Applicable Mathematics.Volume 2. | I 62, II 422 |
| Dineen S. — Complex Analysis of Infinite Dimensional Spaces | 74, 230 |
| Rice J.A. — Mathematical statistics and data analysis | 535 |
| Demidovich B.P., Maron I.A. — Computational Mathematics | 311 |
| Blanchard P., Bruening E. — Mathematical Methods in Physics: Distributions, Hilbert Space Operators, and Variational Method | 265 |
| Mackey G. — Unitary Group Representations in Physics, Probability and Number Theory | 346, 383, 393 |
| Klingenberg W. — A Course in Differential Geometry (Graduate Texts in Mathematics) | 35, 112, 133 |
| Burgisser P., Clausen M., Shokrollahi M.A. — Algebraic complexity theory | 352 |
| Davis P.J. — Mathematics of Matrices | 64 |
| Young D.M., Gregory R.T. — A Survey of Numerical Mathematics, Volume 2 | 323, 732, 893 |
| Braides A. — Gamma-convergence for Beginners | 38, 168 |
| Stakgold I. — Boundary value problems of mathematical physics | 112 |
| Golan J.S. — The Linear Algebra a Beginning Graduate Student Ought to Know (Texts in the Mathematical Sciences) | 407 |
| Choquet-Bruhat Y., Dewitt-Morette C. — Analysis, manifolds and physics | 80 |
| Mac Lane S. — Mathematics: Form and Function | 204 |
| Apostol T. — Mathematical Analysis, Second Edition | 378 |
| Kline M. — Mathematical thought from ancient to modern times | 799, 780, see also "Law of inertia" |
| Beckenbach E., Bellman R. — Inequalities (Ergebnisse der Mathematik und ihrer Grenzgebiete. 2. Folge) | 3 |
| Pallaschke D., Rolewicz S. — Foundations of Mathematical Optimization. Convex Analysis without Linearity | 391 |
| Giorgi G., Guerraggio A., Thierfelder J. — Mathematics of optimization | 14, 206, 217 |
| Andrea Braides — Gamma-convergence for Beginners (Oxford Lecture Series in Mathematics and Its Applications, 22) | 38, 168 |