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For simulation purposes, a constant membrane permeability hypothesis is most often assumed for each gas compound, for sake of simplicity.
In large scale discrete element simulations, on the other hand, viscoelastic or plastic material behavior is often assumed for normal contacts and combined with arbitrary tangential models.
It is often assumed, for example, that the America of the 1950s exuded civic solidarity; indeed, Bob Dole based his 1996 presidential campaign partly on a promise that he would speak for the pre-baby-boomer certitudes that Americans seemed to crave.
In contrast, perfect synchronization is often assumed for the simulation of communication systems.
The simulation results on the distribution of Gram-Schmidt coefficients after reduction have reaffirmed that Gram-Schmidt coefficients are not uniformly distributed, as observed in the excellent experimental study by Nguyen and Stehlé [7] and otherwise often assumed for studying probabilistic behaviors of the LLL algorithm and its variants (see e.g., [49, 50, 53]).
It is often assumed, for example, that basal cortisol profiles do not vary across the menstrual cycle.
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Models often assume, for example, that forests are made up of a relatively uniform mixture of differently sized trees.
"Frugal" innovation is the creation of mass market products that offer "more for less". These items often assume for form of "composite" products that boast multi-purpose, multi-benefit design.
The significance of the convention is not known, although it is often assumed that for the Greeks this kind of smile reflected a state of ideal health and well-being.
All of these issues are too often assumed, and for some reason startups are all expected to learn these things themselves or by some mystical osmosis.
It is often assumed that, for time-frequency well-localized pulses g, this interference is limited to the first-order neighborhood Ωp,q around (p,q), i.e. Ωp,q∈{ p,q±1),(p±1,q),(p±1,q±1)}, and (3) can be written as y ( p, q ) = H ( p ) a ( p, q ) + j ∑ ( m, n ) ∈ Ω p, q H ( m ) a ( m, n ) 〈 g 〉 m, n p, q + η ( p, q ).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com