Reflection coefficientIn physics and electrical engineering the reflection coefficient is a parameter that describes how much of a wave is reflected by an impedance discontinuity in the transmission medium. It is equal to the ratio of the amplitude of the reflected wave to the incident wave, with each expressed as phasors. For example, it is used in optics to calculate the amount of light that is reflected from a surface with a different index of refraction, such as a glass surface, or in an electrical transmission line to calculate how much of the electromagnetic wave is reflected by an impedance discontinuity.
Intervalle QTvignette|Représentation d’un ECG normal L’intervalle QT désigne le laps de temps qui sépare les ondes Q et T sur le tracé d’un électrocardiogramme. Il quantifie le temps entre le début de dépolarisation des cellules myocardiques et leur repolarisation. Un effet secondaire classique de nombreuses classes de médicaments est l’allongement de cet intervalle QT. C'est le cas par exemple des neuroleptiques, des antipaludiques, des macrolides ou des fluoroquinolones.
False positive rateIn statistics, when performing multiple comparisons, a false positive ratio (also known as fall-out or false alarm ratio) is the probability of falsely rejecting the null hypothesis for a particular test. The false positive rate is calculated as the ratio between the number of negative events wrongly categorized as positive (false positives) and the total number of actual negative events (regardless of classification). The false positive rate (or "false alarm rate") usually refers to the expectancy of the false positive ratio.
False positives and false negativesA false positive is an error in binary classification in which a test result incorrectly indicates the presence of a condition (such as a disease when the disease is not present), while a false negative is the opposite error, where the test result incorrectly indicates the absence of a condition when it is actually present. These are the two kinds of errors in a binary test, in contrast to the two kinds of correct result (a and a ).
Generalizations of the derivativeIn mathematics, the derivative is a fundamental construction of differential calculus and admits many possible generalizations within the fields of mathematical analysis, combinatorics, algebra, geometry, etc. The Fréchet derivative defines the derivative for general normed vector spaces . Briefly, a function , an open subset of , is called Fréchet differentiable at if there exists a bounded linear operator such that Functions are defined as being differentiable in some open neighbourhood of , rather than at individual points, as not doing so tends to lead to many pathological counterexamples.
Goal settingGoal setting involves the development of an action plan designed in order to motivate and guide a person or group toward a goal. Goals are more deliberate than desires and momentary intentions. Therefore, setting goals means that a person has committed thought, emotion, and behavior towards attaining the goal. In doing so, the goal setter has established a desired future state which differs from their current state thus creating a mismatch which in turn spurs future actions.
Dérivée logarithmiqueEn mathématiques et plus particulièrement en analyse et en analyse complexe, la dérivée logarithmique d'une fonction f dérivable ne s'annulant pas est la fonction : où f est la dérivée de f. Lorsque la fonction f est à valeurs réelles strictement positives, la dérivée logarithmique coïncide avec la dérivée de la composée de f par la fonction logarithme ln, comme le montre la formule de la dérivée d'une composée de fonctions.
Traitement numérique du signalLe traitement numérique du signal étudie les techniques de traitement (filtrage, compression, etc), d'analyse et d'interprétation des signaux numérisés. À la différence du traitement des signaux analogiques qui est réalisé par des dispositifs en électronique analogique, le traitement des signaux numériques est réalisé par des machines numériques (des ordinateurs ou des circuits dédiés). Ces machines numériques donnent accès à des algorithmes puissants, tel le calcul de la transformée de Fourier.
Pearson correlation coefficientIn statistics, the Pearson correlation coefficient (PCC) is a correlation coefficient that measures linear correlation between two sets of data. It is the ratio between the covariance of two variables and the product of their standard deviations; thus, it is essentially a normalized measurement of the covariance, such that the result always has a value between −1 and 1. As with covariance itself, the measure can only reflect a linear correlation of variables, and ignores many other types of relationships or correlations.
Envelope (waves)In physics and engineering, the envelope of an oscillating signal is a smooth curve outlining its extremes. The envelope thus generalizes the concept of a constant amplitude into an instantaneous amplitude. The figure illustrates a modulated sine wave varying between an upper envelope and a lower envelope. The envelope function may be a function of time, space, angle, or indeed of any variable.