Alignement de séquencesEn bio-informatique, l'alignement de séquences (ou alignement séquentiel) est une manière de représenter deux ou plusieurs séquences de macromolécules biologiques (ADN, ARN ou protéines) les unes sous les autres, de manière à en faire ressortir les régions homologues ou similaires. L'objectif de l'alignement est de disposer les composants (nucléotides ou acides aminés) pour identifier les zones de concordance. Ces alignements sont réalisés par des programmes informatiques dont l'objectif est de maximiser le nombre de coïncidences entre nucléotides ou acides aminés dans les différentes séquences.
Multigrid methodIn numerical analysis, a multigrid method (MG method) is an algorithm for solving differential equations using a hierarchy of discretizations. They are an example of a class of techniques called multiresolution methods, very useful in problems exhibiting multiple scales of behavior. For example, many basic relaxation methods exhibit different rates of convergence for short- and long-wavelength components, suggesting these different scales be treated differently, as in a Fourier analysis approach to multigrid.
Microscopie à super-résolutionLa microscopie à super-résolution est un ensemble de techniques permettant d'imager en microscopie optique des objets à une résolution à l’échelle nanométrique. Elle se démarque par le fait que la résolution obtenue n'est plus limitée par le phénomène de diffraction. Du fait de la diffraction de la lumière, la résolution d’un microscope optique conventionnel est en principe limitée, indépendamment du capteur utilisé et des aberrations ou imperfections des lentilles.
Multiple sequence alignmentMultiple sequence alignment (MSA) may refer to the process or the result of sequence alignment of three or more biological sequences, generally protein, DNA, or RNA. In many cases, the input set of query sequences are assumed to have an evolutionary relationship by which they share a linkage and are descended from a common ancestor. From the resulting MSA, sequence homology can be inferred and phylogenetic analysis can be conducted to assess the sequences' shared evolutionary origins.
Microscope confocalvignette|upright=2|Schéma de principe du microscope confocal par Marvin Minsky en 1957. vignette|upright=1.5|Principe de fonctionnement du microscope à fluorescence puis du microscope confocal. Un microscope confocal, appelé plus rarement microscope monofocal, est un microscope optique qui a la propriété de réaliser des images de très faible profondeur de champ (environ ) appelées « sections optiques ».
Information economicsInformation economics or the economics of information is the branch of microeconomics that studies how information and information systems affect an economy and economic decisions. One application considers information embodied in certain types of commodities that are "expensive to produce but cheap to reproduce." Examples include computer software (e.g., Microsoft Windows), pharmaceuticals, and technical books. Once information is recorded "on paper, in a computer, or on a compact disc, it can be reproduced and used by a second person essentially for free.
Agent-based computational economicsAgent-based computational economics (ACE) is the area of computational economics that studies economic processes, including whole economies, as dynamic systems of interacting agents. As such, it falls in the paradigm of complex adaptive systems. In corresponding agent-based models, the "agents" are "computational objects modeled as interacting according to rules" over space and time, not real people. The rules are formulated to model behavior and social interactions based on incentives and information.
Spectral methodSpectral methods are a class of techniques used in applied mathematics and scientific computing to numerically solve certain differential equations. The idea is to write the solution of the differential equation as a sum of certain "basis functions" (for example, as a Fourier series which is a sum of sinusoids) and then to choose the coefficients in the sum in order to satisfy the differential equation as well as possible.