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In this study, we elucidated the conditions for parallel retreat of rock slopes composed of alternating layers using a geometric method.
In addition, to evaluate whether various rock slopes fulfilled the conditions for parallel retreat, we analyzed topographic data obtained from periodic measurement of rock slopes in the Aka-kuzure landslide, central Japan.
The exposure protocols were organized so that to (1) minimize waiting of aliquoted cells for EP exposure to less than 10 min (on a few occasions, up to 20 min), (2) ensure the same treatment conditions for parallel samples, so that the only variable would be the EP exposure regimen, and (3) carefully randomize all EP treatments, including "sham" exposures.
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First, the number synthesis for spatial parallel manipulators with three limbs is reviewed and the existence conditions for the parallel manipulator considered in this study are presented.
A frequency-domain model has been developed for linear stability analysis, and marginal stability boundaries under several conditions for the parallel-channel system are generated, which indicate that the system normal operational condition is in the stable region.
The experiments were carried out for a heat exchanger with single pass under condition of parallel and counter flow.
In all studies combined, consumption of tea increased FMD vs. control by 2.6% of arterial dilation (95% CI: 1.8 3.3%; P-value <0.001), which is a relative improvement of approximately 40% compared to the average FMD of 6.3% under placebo (for cross-over trials) or baseline (for parallel trials) conditions (Figure 3).
It is important to ensure the same workload conditions for both sequential and parallel times.
Depending upon definition of the curvature tensor, this may lead to conditions for travel in a parallel universe, faster than light travel and past/future time travel.
In this work we have (a) identified the optimum parameter regime for chemical polishing and (b) determined process conditions for which a novel parallel nanoridge configuration self-assembles and extends over a distance of several microns.
The model, which ultimately reduces to the solution of a set of simultaneous algebraic equations, is capable of predicting the flow split among a set of inlet and outlet channels of an interdigitated flow field as well as the overall pressure drop for laminar, turbulent and two-phase flow conditions for arbitrary number of parallel channels.
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