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Kozan (1997) discussed the major factors influencing the transfer efficiency of seaport container terminals.
We find that the transfer efficiency of barium hexaferrite was 0.082% and the transfer efficiency rate coefficient was 0.056 min −1 with a decay factor of −0.773.
This paper discusses the major factors influencing the transfer efficiency of seaport container terminals.
The transfer efficiency or rate of energy transfer between donor and acceptor FPs is then assayed.
The transfer efficiency increase and sea-level fall only resulted in a transient progradation trend.
Stabilizing acceptor structure at the predicted invasion region lowered the transfer efficiency, supporting this conclusion.
It was achieved through the application of a hydrophobic coating to the membrane surface, which greatly improved the transfer efficiency.
Methionine was the first-limiting AA based on the transfer efficiency of AA in arterial plasma to milk protein.
The transfer efficiency of trans-10, cis-12 CLA from the dietary supplement into milk fat was 3.8%.
The experiments show that the transfer efficiency of this system can reach 25% (with a 10-m long fiber).
Experiments were then conducted to assess the effect of physiological variations of the main factors on the transfer efficiency.
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