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Strategy Beyond Markets (Hardcover): Brian Silverman Strategy Beyond Markets (Hardcover)
Brian Silverman; Edited by John M. de Figueiredo, Michael Lenox, Felix Oberholzer-Gee, Richard G. Vanden Bergh
R4,250 Discovery Miles 42 500 Ships in 12 - 17 working days

Strategy Beyond Markets examines how the strategies employed by firms affect long run value. Scholars in this field focus their attention on firm interactions with entities other than the firm's primary market stakeholders. These stakeholders include international NGOs, environmental groups, local communities, regulators, politicians and the courts. This book is organized around three themes: Public politics, private politics, and integrated political strategy. In public politics, firms use sophisticated instruments (e.g., campaign funding, committee participation) to influence local, national, and international political environments. In private politics, firms work closely with NGOs and other special interest groups to preempt unfavorable policy, react swiftly to crises, and proactively develop socially responsible strategies. Additionally, firms that are heavily influenced by politics are more likely to craft integrated political strategy as part of a more comprehensive plan. This special issue comprises papers from preeminent scholars including David Baron, Jean-Philippe Bonardi, Daniel Diermeier, Thomas Lyon, John Maxwell, Ken Shotts, and Dennis Yao.

Molecular Genetics, Biochemistry and Clinical Aspects of Inherited Disorders of Purine and Pyrimidine Metabolism (Paperback,... Molecular Genetics, Biochemistry and Clinical Aspects of Inherited Disorders of Purine and Pyrimidine Metabolism (Paperback, Softcover reprint of the original 1st ed. 1993)
Ursula Gresser; Contributions by R. A. de Abreu, J. Aimi, F.X. Arredondo-Vega, B.a. Barshop, …
R2,745 Discovery Miles 27 450 Ships in 10 - 15 working days

Inherited disorders of purine and pyrimidine metabolism in man lead to severe diseases. At the 2nd M}nchner Adventssymposium the state of the art as to the genetic basis, clinical aspects, and the biochemical basis has been given by leading experts in the fields concerning the following diseases: Hypoxanthine phosphoribosyltransferase deficiency (HGPRT-deficieny), adenine phosphoribosyltransferase deficiency (APRT-deficiency), hyperuricemia and gout, adenosine deaminase deficiency (ADA-deficiency, purine nucleoside phosphorylase deficiency (PNP-deficiency). All contributions of the symposium are published within this volume thus giving and overview of this most interesting field.

Urate Deposition in Man and its Clinical Consequences (Paperback, Softcover reprint of the original 1st ed. 1991): Ursula... Urate Deposition in Man and its Clinical Consequences (Paperback, Softcover reprint of the original 1st ed. 1991)
Ursula Gresser; Contributions by R. D. De Abreu, G. Vanden Berghe; Edited by Nepomuk Zoellner; Contributions by G. Calabrese, …
R2,741 Discovery Miles 27 410 Ships in 10 - 15 working days

One person in four in the industrialized countries suffers from hyperuricemia and is therefore at risk of developing gouty arthritis, nephrolithiasis, or any of the other consequences of urate deposition. At present, far too little is known about urate deposition and the mechanisms by which it occurs, as well as about its clinical consequences, which include formation of toph; over the helix of the ear or in bones close to joints that have never exhibited an attack, development of bursitis, chronic tendovaginitis leading to carpal tunnel syndrome, and gouty paraplegia. Information on these matters is needed to estimate the risks of hyperuricemia and to determine when therapeutic intervention is indicated. The contributions and discussions in this book, resulting from an international symposium held in December 1990 in the Medizinische Poliklinik in Munich, provide an up-to-date source of current knowledge about hyperuricemia in man and its clinical consequences.

Ordinary Differential Equations and Integral Equations, Volume 6 (Paperback, 1st ed): C. T. H. Baker, G. Monegato, G. Vanden... Ordinary Differential Equations and Integral Equations, Volume 6 (Paperback, 1st ed)
C. T. H. Baker, G. Monegato, G. Vanden Berghe; Edited by J.D. Pryce
R3,854 Discovery Miles 38 540 Ships in 10 - 15 working days


/homepage/sac/cam/na2000/index.html7-Volume Set now available at special set price !


This volume contains contributions in the area of differential equations and integral equations. Many numerical methods have arisen in response to the need to solve "real-life" problems in applied mathematics, in particular problems that do not have a closed-form solution. Contributions on both initial-value problems and boundary-value problems in ordinary differential equations appear in this volume. Numerical methods for initial-value problems in ordinary differential equations fall naturally into two classes: those which use one starting value at each step (one-step methods) and those which are based on several values of the solution (multistep methods).
John Butcher has supplied an expert's perspective of the development of numerical methods for ordinary differential equations in the 20th century.
Rob Corless and Lawrence Shampine talk about established technology, namely software for initial-value problems using Runge-Kutta and Rosenbrock methods, with interpolants to fill in the solution between mesh-points, but the 'slant' is new - based on the question, "How should such software integrate into the current generation of Problem Solving Environments?"
Natalia Borovykh and Marc Spijker study the problem of establishing upper bounds for the norm of the nth power of square matrices.
The dynamical system viewpoint has been of great benefit to ODE theory and numerical methods. Related is the study of chaotic behaviour.
Willy Govaerts discusses the numerical methods for the computation and continuation of equilibria and bifurcation points of equilibria of dynamicalsystems.
Arieh Iserles and Antonella Zanna survey the construction of Runge-Kutta methods which preserve algebraic invariant functions.
Valeria Antohe and Ian Gladwell present numerical experiments on solving a Hamiltonian system of Henon and Heiles with a symplectic and a nonsymplectic method with a variety of precisions and initial conditions.
Stiff differential equations first became recognized as special during the 1950s. In 1963 two seminal publications laid to the foundations for later development: Dahlquist's paper on A-stable multistep methods and Butcher's first paper on implicit Runge-Kutta methods.
Ernst Hairer and Gerhard Wanner deliver a survey which retraces the discovery of the order stars as well as the principal achievements obtained by that theory.
Guido Vanden Berghe, Hans De Meyer, Marnix Van Daele and Tanja Van Hecke construct exponentially fitted Runge-Kutta methods with s stages.
Differential-algebraic equations arise in control, in modelling of mechanical systems and in many other fields.
Jeff Cash describes a fairly recent class of formulae for the numerical solution of initial-value problems for stiff and differential-algebraic systems.
Shengtai Li and Linda Petzold describe methods and software for sensitivity analysis of solutions of DAE initial-value problems.
Again in the area of differential-algebraic systems, Neil Biehn, John Betts, Stephen Campbell and William Huffman present current work on mesh adaptation for DAE two-point boundary-value problems.
Contrasting approaches to the question of how good an approximation is as a solution of a given equation involve (i) attempting to estimate the actual error (i.e., thedifference between the true and the approximate solutions) and (ii) attempting to estimate the defect - the amount by which the approximation fails to satisfy the given equation and any side-conditions.
The paper by Wayne Enright on defect control relates to carefully analyzed techniques that have been proposed both for ordinary differential equations and for delay differential equations in which an attempt is made to control an estimate of the size of the defect.
Many phenomena incorporate noise, and the numerical solution of stochastic differential equations has developed as a relatively new item of study in the area.
Keven Burrage, Pamela Burrage and Taketomo Mitsui review the way numerical methods for solving stochastic differential equations (SDE's) are constructed.
One of the more recent areas to attract scrutiny has been the area of differential equations with after-effect (retarded, delay, or neutral delay differential equations) and in this volume we include a number of papers on evolutionary problems in this area.
The paper of Genna Bocharov and Fathalla Rihan conveys the importance in mathematical biology of models using retarded differential equations.
The contribution by Christopher Baker is intended to convey much of the background necessary for the application of numerical methods and includes some original results on stability and on the solution of approximating equations.
Alfredo Bellen, Nicola Guglielmi and Marino Zennaro contribute to the analysis of stability of numerical solutions of nonlinear neutral differential equations.
Koen Engelborghs, Tatyana Luzyanina, Dirk Roose, Neville Ford and Volker Wulf consider the numerics ofbifurcation in delay differential equations.
Evelyn Buckwar contributes a paper indicating the construction and analysis of a numerical strategy for stochastic delay differential equations (SDDEs).
This volume contains contributions on both Volterra and Fredholm-type integral equations.
Christopher Baker responded to a late challenge to craft a review of the theory of the basic numerics of Volterra integral and integro-differential equations.
Simon Shaw and John Whiteman discuss Galerkin methods for a type of Volterra integral equation that arises in modelling viscoelasticity.
A subclass of boundary-value problems for ordinary differential equation comprises eigenvalue problems such as Sturm-Liouville problems (SLP) and Schrodinger equations.
Liviu Ixaru describes the advances made over the last three decades in the field of piecewise perturbation methods for the numerical solution of Sturm-Liouville problems in general and systems of Schrodinger equations in particular.
Alan Andrew surveys the asymptotic correction method for regular Sturm-Liouville problems.
Leon Greenberg and Marco Marletta survey methods for higher-order Sturm-Liouville problems.
R. Moore in the 1960s first showed the feasibility of validated solutions of differential equations, that is, of computing guaranteed enclosures of solutions.
Boundary integral equations. Numerical solution of integral equations associated with boundary-value problems has experienced continuing interest.
Peter Junghanns and Bernd Silbermann present a selection of modern results concerning the numerical analysis of one-dimensional Cauchy singular integral equations, in particular the stability of operator sequences associated with different projection methods.
Johannes Elschner and Ivan Graham summarize the most important results achieved in the last years about the numerical solution of one-dimensional integral equations of Mellin type of means of projection methods and, in particular, by collocation methods.
A survey of results on quadrature methods for solving boundary integral equations is presented by Andreas Rathsfeld.
Wolfgang Hackbusch and Boris Khoromski present a novel approach for a very efficient treatment of integral operators.
Ernst Stephan examines multilevel methods for the h-, p- and hp- versions of the boundary element method, including pre-conditioning techniques.
George Hsiao, Olaf Steinbach and Wolfgang Wendland analyze various boundary element methods employed in local discretization schemes.

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