Stirling numbers of the first kindIn mathematics, especially in combinatorics, Stirling numbers of the first kind arise in the study of permutations. In particular, the Stirling numbers of the first kind count permutations according to their number of cycles (counting fixed points as cycles of length one). The Stirling numbers of the first and second kind can be understood as inverses of one another when viewed as triangular matrices. This article is devoted to specifics of Stirling numbers of the first kind.
Espace à quatre dimensionsframe|L'équivalent en quatre dimensions du cube est le tesseract. On le voit ici en rotation, projeté dans l'espace usuel (les arêtes représentées comme des tubes bleus sur fond noir).|alt=Animation d'un tesseract (les arêtes représentées comme des tubes bleus sur fond noir). En mathématiques, et plus spécialement en géométrie, l'espace à quatre dimensions (souvent abrégé en 4D ; on parlera par exemple de rotations en 4D) est une extension abstraite du concept de l'espace usuel vu comme espace à trois dimensions : tandis que l'espace tridimensionnel nécessite la donnée de trois nombres, appelés dimensions, pour décrire la taille ou la position des objets, l'espace à quatre dimensions en nécessite quatre.
Stirling numbers of the second kindIn mathematics, particularly in combinatorics, a Stirling number of the second kind (or Stirling partition number) is the number of ways to partition a set of n objects into k non-empty subsets and is denoted by or . Stirling numbers of the second kind occur in the field of mathematics called combinatorics and the study of partitions. They are named after James Stirling. The Stirling numbers of the first and second kind can be understood as inverses of one another when viewed as triangular matrices.
Animal migration trackingAnimal migration tracking is used in wildlife biology, conservation biology, ecology, and wildlife management to study animals' behavior in the wild. One of the first techniques was bird banding, placing passive ID tags on birds legs, to identify the bird in a future catch-and-release. Radio tracking involves attaching a small radio transmitter to the animal and following the signal with a RDF receiver. Sophisticated modern techniques use satellites to track tagged animals, and GPS tags which keep a log of the animal's location.