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The capacity changes observed during the first several cycles may be due to the oxygen deficiency of the structure caused by the heat-treatment process.
Through the first several cycles, the structure of composites HN and GN seemed to be stable, and their high capacities were maintained up to 50 cycles.
During cyclic tests, the first several cycles changed the lateral displacement and stiffness significantly, whereas the last several cycles did not obviously affect them.
Except for the first several cycles, the coulombic efficiency of the Li2ZrO3 electrode was nearly 100% at a discharge/charge rate of 0.3 C.
In addition, a gradual electrochemical activation process is observed to occur in the first several cycles, relating to the gradual generation of SEI layers on the electrode surface.
Furthermore, the reversible capacities of CoFe2O4-GNSs, CoFe2O4-GNSs-350, and CoFe2O4-GNSs-550 nanocomposites slightly increase from the second cycle and reach to ~1,086, 1,071, and 839 mAh g−1 after 50 cycles, respectively, which could be ascribed to the gradual activation of GNSs in nanocomposites in the first several cycles.
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The expression of initial cell type node decreases rapidly in the first several cell cycles; the expression of ESC node increases rapidly from 11th cell cycle on; the expression of upper level neighbor and sibling node first increases and then decreases; the expression of nodes in lineages other than that of the initial cell type remain near zero.
In repeated cyclic loading to a compressive stress of 60 MPa, the coatings were observed to demonstrate large amounts of non-recoverable strain during the first several load/unload cycles, presumably due to permanent sliding and compaction of lamella.
In the first several ALD cycles, the Al O stoichiometry of 1 2 is due to the presence of CuAlO2.
Because the focus of this study is on the first several ALD cycles, the Cu substrate may affect film growth even after film closure.
The formation of butyryl-S-ACP [67] completes the first of several cycles, in each of which one molecule of malonyl coenzyme A enters via reaction [62] and [63b].
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