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Sengupta and Dahbura [25] proved topological conditions for characterizing any one-step t-fault diagnosable graph G: Every two fault sets X 1 and X 2 in G have to be distinguishable if both X 1 and X 2 contain at most t vertices.
There exist {u,w}⊆V(G)∖(X 1∪X 2) and {v}⊆X 1△X 2 (Fig. 1 a, b ), Fig. 1 Topological conditions for characterizing a pair X 1,X 2 of two distinguishable fault sets: a & b The first condition of Lemma 1; c & d the second condition of Lemma 1; e the third condition of Lemma 1; f the fourth condition of Lemma 1 2.
The detailed MLST protocol and multiplex PCR conditions for characterizing the Stx genes (stx1/ stx2) can be found at the STEC Reference Center website.
In order to generate the most informative conditions for characterizing eIF2-dependent mechanisms of translation regulation, it was important to minimize the transcriptional response and induce significant but not complete inhibition of translation.
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The experimental conditions that produce bimodally-distributed fatigue populations were investigated in Ti 6Al 2Sn 4Zr 6Mo, with the aim of identifying conditions favorable for characterizing life-limiting fatigue behavior.
However, similar works have investigated the dependence ofphysical properties of a ZnO thin film as a function of parameter conditionssuch a temperature, thickness, oxidizing conditions, nitrogen addition, anddoping for characterizing the thin films [17, 18, 19, 20, 21, 22, 23, 24, 25].
I present a three-dimensional disturbance severity model and illustrate the potential usefulness of the model for characterizing disturbance conditions caused by forest harvesting.
The proposed estimation method for measuring retroactivity, based on the gene expression noise, can serve as a practical method for characterizing interface conditions between two synthetic modules and eventually provide a step toward large-scale circuit design for synthetic biology.
The methods for characterizing culture conditions and the novel online measurement techniques that are summarized in this article can be utilized to tap the full potential of shaking reactor systems.
Imaging bacteria subcutaneously inoculated beneath the skin of mice provides controlled conditions and ease of access for characterizing the sensitivity of this system in mammalian tissue.
This paper presents and compares two computational approaches — one relying on a quasi-analytical formulation and another employing the finite element method — for characterizing the interfacial conditions arising in experimental set-ups used to simulate conditions of fretting in blade/disk contacts.
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