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The software is designed as a laboratory [5] in constant evolution and includes both consolidated algorithms as the 3D morphing and experimental technologies, as the fuzzy mathematics used to handle the relations between human parameters, the non-linear interpolation [6] used to define the age, mass and tone, the auto-modelling engine based on body proportions and the expert system used to ...
Technically, the model developed for MakeHuman is: Light and optimized for subdivision surfaces modelling (15,128 vertices). Quads only. The human mesh itself is triangles free, using Catmull-Clark subdivision for extra resolution to base meshes, see also polygon mesh. Only E(5) Pole and the N(3) Pole, without holes and without 6-edge poles.
MOOSE (Multiphysics Object Oriented Simulation Environment) is an object-oriented C++ finite element framework for the development of tightly coupled multiphysics solvers from Idaho National Laboratory. [1] MOOSE makes use of the PETSc non-linear solver package and libmesh to provide the finite element discretization.
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There also seems to be a cognate to Danish dialectal doglæp ("flap of skin that sweeps dew from grass, especially on the neck of an ox"), [2] but this might be a parallel independent development. From the 1580s onward, it was applied to the fleshy fold or wattle of a turkey and also to a flaccid, elderly human throat.
Male Western moose stand anywhere from 1.9 to 2.0 metres (6.2 to 6.6 ft) at the shoulder. Their antlers span 1.5 to 1.7 metres (4.9 to 5.6 ft) and they weigh anywhere from 380–720 kilograms (840–1,590 lb). Female Western moose stand at 1.8 metres (5 ft 11 in) on average, and weigh anywhere from 270 to 360 kilograms (600 to 790 lb).
Alaska moose are sexually dimorphic with males being 40% heavier than females. [5] Male Alaska moose can stand over 2.1 m (6.9 ft) at the shoulder, and weigh over 635 kg (1,400 lb). When Alaska moose are born, they weigh on average about 28 pounds, but by five months old they can weigh up to 280 pounds. [4]
A skin equivalent is an in vitro skin model using to conduct experiments on processes involving the skin, such as wound healing and keratinocyte migration. It is a more complex form of the dermal equivalent. [1]