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After a brief description of the role and functions of digital information systems, we examine, within the conception of these systems, the decisive breaks resulting from technological advances.
Building on recent syntheses focused on the effects of host community composition on single pathogen systems, we examine pathogen (microparasite) communities using a stochastic metacommunity model as a starting point to bridge community and disease ecology perspectives.
Toward an improved understanding of the utility of low-order equivalent models for submersible systems, we examine control design for pitch-axis motion of an autonomous underwater vehicle (AUV).
To compare the anomalous distortion of different analog coding systems, we examine the bit error rate (BER) performance of the itinerary bits for each code.
To enable model-driven design synthetic biological systems, we examine the effect of ribosome binding sites (RBSs) on the steady state transfer function of input switch devices.
To further understand the effects of loops coupling in negative feedback systems, we examine a system consisting of four species with two loops in action, denoted (see Figure 3l for the circuit diagram and model equations).
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Our analysis yielded uniformly low rates of prescription drug acquisition from online sources across all five data systems we examined.
Indeed, all of the bioreaction systems we examined contain physiological constraints, which cannot be explained by elemental balances or metabolic stoichiometry.
In the systems we examined, cores should be at least 3 m apart to achieve the greatest sampling efficiency for stand-level community analysis.
For in-house treatment systems, we examined the performance of arsenic removal by point-of-use reverse osmosis filtration, and by whole-house and point-of-use filters containing granulated ferric oxide.
Our results show that, for the coastal marine systems we examined, extinctions are reducing the number of predatory species and secondary consumers while invasions are greatly increasing the number of primary filter feeders, detritivores, deposit feeders, and other primary consumers.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com