Exact(6)
Synergistic effects at the metal-carbide interface produce an enhancement in chemical activity with respect to pure Pt, MoC and TiC.
Even simple undulations in a smooth interface produce caustics, giving rise to ground motions whose spatial incoherence characteristics resemble those of the Coalinga data.
For example, in electrochemical cells (apparatus used to generate electric current from a chemical reaction or vice versa) where the fundamental process involves the transfer of electrons between a metallic electrode and a solution, small changes in the electrical field strength across the interface produce large changes in the rate of flow of electrons (current).
Fretting wear and corrosion of Ti6Al4V alloys at the bone/implant stem interface produce the release of wear particles and corrosive ions from the stem into the surrounding tissue that can induce bone resorption.
Mutations that destabilize the dimer interface produce extremely large oligomers that can rearrange to form long-lived complexes with a model client protein.
Mutations in α-tubulin at the intradimer interface produce Arabidopsis plants with left-handed chiral roots and stems and clockwise-bending leaves and flowers.
Similar(54)
However, reduced fatigue strength was observed in the high-cycle region, which might be attributed to the defects at the coating/substrate interface produced during the surface modification.
A branched molecular architecture prevents a close packing of the monomers in the bulk solution and at the interface producing a steric hindrance around the head groups.
From previous work with Au ceria Pt mixed potential sensors, this behavior is attributed to precisely controlling the metal oxide electrode/solid electrolyte interface unlike the undefined interface produced when Au electrodes are used.
It is shown that the volume change associated with the solid-state transformation at the CuO/Cu2O interface produces compressive stresses, which stimulate CuO nanowire growth to accompany the interface reaction.
The associative reaction pathway is the only one which is operable under conditions of CO2 methanation and proceeds via intermediate formation of carbonyl species at the metal-support interface, produced by the RWGS reaction.
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