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In this paper coupled extensional flexural wave propagation is investigated by considering the mobility of a "semi-infinite" beam with a constant radius of curvature.
To adapt the proposed model to the high mobility, we design it on top of the VANET QoS-OLSR protocol, which is a clustering protocol that maintains the stability of the clusters and prolongs the network's lifetime by considering the mobility metrics of vehicles during clusters formation.
In this study, Lucas-Washburn (LW) theory is revisited by further considering the effective viscosity and slippage to accurately model the capillary filling behaviors in nanopores, where the effective viscosity is investigated by considering the energy barrier induced by pore wall while the true slip is modelled with the wettability by considering the mobility of first-liquid-layer molecules.
The suitability value of the vehicle is calculated by considering the mobility information of its stable neighbors only.
Maximum node value of a Node can be calculated by considering the mobility of the node as NULL.
Thus, u= f (d, v, p) is a function defined according to the following criteria: The suitability value of the vehicle is calculated by considering the mobility information of its stable neighbors only.
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By Tiffiny Carlson, the Mobility Resource.
Considering the mobility features on practical highways, we apply the free mobility model [34] to model the mobility of vehicles on highways.
However, as we model mobility at macro level, it is done by considering the impact of mobility on the variation of the variable assessed for making the rebroadcast decision.
Of the abovementioned methods, by considering the high electron mobility of nanocrystals and the possibility of shifting the optical band gap to the visible light region using organic materials, the organic inorganic heterojunction can produce a robust photoelectrochemical sensor.
Therefore, by considering the renormalized transport mobility μ′ induced by the ballistic contribution and the diffusion correction δ σ xx d, σxx is expressed as σ xx = neμ ' 1 + μ ' 2 B 2 + δ σ xx d, (2) σ xy = neμ ' 2 B 1 + μ ' 2 B 2. (3).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com