dual$23178$ - traduction vers Anglais
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dual$23178$ - traduction vers Anglais

POLYHEDRON WHOSE VERTICES CORRESPOND TO THE FACES OF ANOTHER ONE
Dual polyhedra; Dual polytope; Self-dual polyhedron; Self-dual polyhedra; Geometric dual; Dorman Luke; Dorman Luke construction; Polyhedral dual; Self-dual figure; Self-dual polytope; Dual tessellation; Canonical dual; Polyhedron dual; Dual (polyhedron); Tiling dual; Dual tiling
  • Canonical [[dual compound]] of cuboctahedron (light) and rhombic dodecahedron (dark). Pairs of edges meet on their common [[midsphere]].
  • The [[Infinite-order apeirogonal tiling]], {∞,∞} in red, and its dual position in blue
  • topological dual]].<br>Images from [[Kepler]]'s [[Harmonices Mundi]] (1619)
  • The [[square tiling]], {4,4}, is self-dual, as shown by these red and blue tilings
  • The dual of a [[cube]] is an [[octahedron]]. Vertices of one correspond to faces of the other, and edges correspond to each other.

dual      
adj. doppelt, dual
Dual In-line Package         
  • An operating prototyped circuit on a solderless [[breadboard]] incorporating four DIP ICs, a DIP LED bargraph display (upper left), and a DIP 7-segment LED display (lower left).
  • Side view of a dual in-line package (DIP) IC
  • Dual in-line (DIP) integrated circuit metal tape base with contacts
  • [[EPROM]] ICs in 0.6" wide ceramic DIP-40, DIP-32, DIP-28, DIP-24 packages, also known as CDIP (Ceramic DIP)
  • 8 contact [[DIP switch]] with 0.3" wide 16-pin (DIP-16N) footprint
  • A Rockwell [[6502]]-based microcontroller in a QIP package
  • Breadboard prototype: Ultrasonic microphone preamp build with SMD-parts soldered to DIP and SIP breakout boards.
TYPE OF ELECTRONIC COMPONENT PACKAGE
Dual-Inline Package; Dual inline package; Dual Inline Package; Single in-line package; SPDIP; PDIP; CERDIP; DIL14; DIP-8; Dual In-line Package; Quadruple in-line package; Shrink DIP; Skinny DIP; Dip (electronics); DIL package; Dual inline packages; QIL; Dual in-line pin package; Plastic dual in-line package; DIP socket; DIL socket; Dual in-line socket; Dual in-line package socket; Pdip
Dual In-line Package, DIP, Speicherchip in einer Reihe angeordnet der jeweils zwei Stellungen einnehmen kann (Computer)
dual citizenship         
  • Dual citizenship means persons can have or travel with two passports
SIMULTANEOUS CITIZENSHIP OF MULTIPLE COUNTRIES BY THE SAME PERSON
Dual nationality; Dual-citizenship; Dual national; Dual citizen; Dual-citizen; Dual cit; Double citizenship; Multiple nationality; Double nationality; Multiple citizenships; Dual citizenship; English–American; Dual citizens; Subnational citizenship; Automatic citizenship; Dual-nationality
doppelte Staatsangehörigkeit

Définition

Dual In-Line Package
<hardware> (DIL, DIP) The most common type of package for small and medium scale integrated circuits, with up to about 48 pins. The pins hang vertically from the two long edges of the rectangular package, spaced at intervals of 0.1 inch. The pins fit through holes in the circuit board to which they are soldered or into a socket. [More than 48 pins?] (1995-02-06)

Wikipédia

Dual polyhedron

In geometry, every polyhedron is associated with a second dual structure, where the vertices of one correspond to the faces of the other, and the edges between pairs of vertices of one correspond to the edges between pairs of faces of the other. Such dual figures remain combinatorial or abstract polyhedra, but not all can also be constructed as geometric polyhedra. Starting with any given polyhedron, the dual of its dual is the original polyhedron.

Duality preserves the symmetries of a polyhedron. Therefore, for many classes of polyhedra defined by their symmetries, the duals belong to a corresponding symmetry class. For example, the regular polyhedra – the (convex) Platonic solids and (star) Kepler–Poinsot polyhedra – form dual pairs, where the regular tetrahedron is self-dual. The dual of an isogonal polyhedron (one in which any two vertices are equivalent under symmetries of the polyhedron) is an isohedral polyhedron (one in which any two faces are equivalent [...]), and vice versa. The dual of an isotoxal polyhedron (one in which any two edges are equivalent [...]) is also isotoxal.

Duality is closely related to polar reciprocity, a geometric transformation that, when applied to a convex polyhedron, realizes the dual polyhedron as another convex polyhedron.