Numerical solution of the linear wave problem for a periodically forced floating disc predicts oscillation amplitudes in good agreement with laboratory experiments.
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Activity in SALR colloidal suspensions enhances particle transport while preserving microphase structure, producing a structure-dynamics decoupling.
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Vertical motion of a periodically driven floating disc
Numerical solution of the linear wave problem for a periodically forced floating disc predicts oscillation amplitudes in good agreement with laboratory experiments.
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Activity enhances transport while competing interactions preserve structure in colloidal microphase formers
Activity in SALR colloidal suspensions enhances particle transport while preserving microphase structure, producing a structure-dynamics decoupling.