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Based on 2014 evaluation, the NALDN is found to overestimate the current peak measured at the tower by a factor of 3.89, which is due to field enhancement effect resulting from high speed propagation of the current within the tall tower.
Moreover, the proposed method is simultaneously time efficient due to high speed propagation and less iteration time.
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The findings indicate that heavily doped samples that do not yield a microscale structure result in slow propagation speeds, and low doped substrates with randomly formed micro-crack patterns during the electrochemical dissolution result in high speed propagations.
Algorithms presented will then be able to cope with a unique OFDM symbol and therefore able to deal with very high-speed propagation channels.
Together with an apparently high speed of propagation (more than 20 mm/s Emerson et al. 2002; Stevens et al. 2000; Tsuchiya and Takei 1990), this points to an electrical nature of the phenomenon.
Of the body waves, the primary, or P, wave has the higher speed of propagation and so reaches a seismic recording station faster than the secondary, or S, wave.
The wave equation is derived for the acoustic potential in the following cases: (a) linear/non-linear sound waves, respectively of small/large amplitude; (b) medium at rest, or steady potential flow, the latter either of low Mach number, or high speed; (c) three-dimensional propagation in free space, or quasi-one-dimensional acoustics of ducts of varying cross-section.
A drop-weight impact machine was instrumented with a high speed camera to measure the propagation of macro-cracks and correlate it to the force-displacement dynamic response at several impact energy levels.
Reactivity of a sample was quantified by measuring the reaction front propagation velocity using high speed imaging and the amount of reacted material using XRD analysis of the reaction product.
Liver stiffness was assessed using transient elastogroaphy (TE), a non-invasive means of assessing liver fibrosis by transmitting low speed elastic waves (~1 m/sec) and determining their propagation velocity with high speed ultrasound.
Here, our unstable slip experiments on synthetic gouge layers demonstrate a succession of different modes of rupture (Figure 4), consisting of a phase with nucleation/propagation events that take place at a slow velocity (approximately 0.1% of V s ), often followed by an unstable phase that eventually leads to the onset of high-speed rupture propagation (comparable in velocity to V s ).
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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