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The stronger foam formed in the less porous and permeable cores contributed to better mobility control leading to the efficient displacement of trapped oil (Bageri et al. 2014).
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The test results stated that the material composition variation of the FGM face plates was a highly influential parameter for damage modes, energy absorbing capacity, and impact resistance of the sandwich structure, and the honeycomb core contributed to the energy absorbing capacity of the sandwich structure with the plastic buckling of the cell walls and lateral crushing deformations.
The introduced small substituents to TIPSAnt core contributed to the dramatically different charge transport property from an n-type semiconductor of TIPSAntBt to p-type semiconductor of TIPSAntNa, which shed light on molecular design for an n-type semiconductor through simple chemical structural modification.
Those CFBBCs in which the concrete core contributed to bearing axial loads, the behavior changed dramatically.
The Raman spectra disclose that diprotonation of the porphyrin core contributes to delocalized coherent excited states in the nanoparticles.
Moreover, anthracene with strong fluorescence was used as the semiconducting core, contributing to a photoluminescence quantum yield of DPA of up to 41.2%13.
Steady state fluorescence and ultrafast pump probe spectroscopy techniques revealed that only 2, 6 positions of aza-boron-dipyrromethene core contribute to triplet state population significantly.
Although central architectures that support robust oscillations have been extensively studied, networks containing the same core vary drastically in their potential to oscillate, and it remains elusive what peripheral modifications to the core contribute to this functional variation.
This is consistent with data comparing binding of multiple different SIMs to both SUMO1 and SUMO2, which suggests that negatively charged amino acids surrounding the hydrophobic core contribute to SUMO1 binding, but much less so to binding of SUMO2 [24].
It has been noted that the arginine residues in the AT-hook sequence PRGRP insert their side chains into the minor groove of DNA and thus contribute directly to DNA binding, while lysines flanking the AT-hook core contribute to DNA binding by neutralizing negative charges of the DNA backbone [13], [17].
Candles with a lead metal core contribute to lead in the home (Nriagu and Kim 2000; van Alphen 1999).
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