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Magnetic clusters produced by the conjugation of the BMNs to CEAs showed a ΔM S greater than that of BMNs.
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Across all clustering methods, smaller clusters produced more precise predictions.
The conjugation of BMNs with the biotarget produces magnetic clusters because of molecular interaction (Fig. 1), and the magnetic properties of the reagent changes.
The MCL clustering produced several small clusters.
This clustering produced 44,948 contigs and singletons.
Magnetic cluster themselves may produce the up and down movement change under alternating magnetic force.
We use the Fe3O4-antiCRP-CRP magnetic clusters as the bio-target and study the effects of magnetic clustering on the changes of magnetization.
We succeeded in extracting magnetic clusters from an intelligent fluid that is responsive to a magnetic field.
An initial fast but coarse clustering produces 'super-clusters'.
Large magnetic fields produced by powerful magnets are also believed to be in use.
The initial clustering step produced 11,820 clusters.
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