Perturbation (Mathematics)
Featured — award winners and classics first, when available. Use “Show different books” for a new selection.
🔄 Show different books
Introduction to Perturbation Techniques
Series expansion methods for strongly interacting lattice models
Gradient estimation via perturbation analysis
The PMO Theory of Organic Chemistry
Differential systems involving impulses
Perturbation analysis of discrete event dynamic systems
Importance, the adjoint function
The analytic evaluation of molecular properties and gradients for correlated wavefunctions
Operator functions and localization of spectra
Boundary-interior layer interactions in nonlinear singular perturbation theory
Nonlinear wave methods for charge transport
Random perturbation methods with applications in science and engineering
Asymptotic analysis from theory to application
Perturbation methods
Analytic one-electron response properties, molecular gradients, and force constants in many-body methods
Introduction to perturbation techniques
Singular perturbations in systems and control
Perturbation techniques in mathematics, physics, and engineering
Quasi-periodic motions in families of dynamical systems
Convexity and Well-Posed Problems (CMS Books in Mathematics)
On the birth of boundary layers
Asymptotic Treatment of Differential Equations (Applied Mathematics and Mathematical Computation Series)
Introduction to Perturbation Methods
The PMO theory of organic chemistry
Singular perturbations and hysteresis
Perturbation methods in fluid mechanics
The space of dynamical systems with the C⁰-topology
Perturbation methods, bifurcation theory, and computer algebra
Geometric perturbation theory in physics