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Corrected factors of the geometry in different positions have been determined. A typical reader is, therefore, an instructional staff member or a student in a computational field e. To a great extent, this formulation is consistent with the basic genetic findings of Mendel. Such effects result from basic mechanisms driven by both the shape of the electric field which stands into the oxide and by fabrication process parameters inducing pre-existing traps in the oxide's bulk.

It is perhaps the first mechanism ever taught in any introductory biology class. The formulation of crossover, and resulting recombination, came about years after Mendel's famous experiments.

To a great extent, this formulation is consistent with the basic genetic findings of Mendel. More importantly, it provides a mathematical insight for his two laws and corrects them.

From a mathematical perspective, and while it retains similarities, genetic recombination guarantees diversity so that we do not rapidly converge to the same being. It is this diversity that made the study of biology possible.

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In particular, the problem of genetic mapping and linkage-one of the first efforts towards a computational approach to biology-relies heavily on the mathematical foundation of crossover and recombination. Nevertheless, as students we often overlook the mathematics of these phenomena.

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The proposed cooling wavelengths of BeI and MgI are both in the violet region. Curien, UMR,Saint-Etienne France Total ionizing dose TID effects have been studied for a long time in micro-electronic components designed to operate in natural and artificial environments.

Such effects result from basic mechanisms driven by both the shape of the electric field which stands into the oxide and by fabrication process parameters inducing pre-existing traps in the oxide's bulk. From the pioneering studies based on 'thick' oxide technologies to the most recent ones dedicated to innovative technologies, most studies concluded that the impact of total ionizing dose effects reduces with the oxide thinning.

TID effects are now mainly due to charge trapping in the field oxides such as Shallow Trench Isolation. However, such phenomenon may not be directly extrapolated to higher TID ranges, typically of several MGy for which only few data are available in the literature.

Such electrical shifts are encountered.