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樟脑盘浮于水面的塑料杯的高度相关的振荡运动。

Height-dependent oscillatory motion of a plastic cup with a camphor disk floated on water.

机构信息

Graduate School of Integrated Science for Life, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima 739-8526, Japan.

出版信息

Phys Chem Chem Phys. 2023 May 24;25(20):14546-14551. doi: 10.1039/d3cp00318c.

Abstract

We have developed a self-propelled object, which is composed of a plastic cup and a camphor disk, on water to reflect its three-dimensional shape in the nature of motion. The self-propelled object, of which the driving force of motion is the difference in the surface tension, exhibited oscillatory motion between motion and rest. The period and the maximum speed of oscillatory motion increased and decreased depending on the height of the cup, , respectively. Two types of diffusion coefficients were estimated based on the diffusion of camphor molecules which were indirectly visualized using 7-hydroxycoumarin. The experimental result on the period of oscillatory motion depending on could be reproduced by the numerical calculation based on the diffusion of camphor molecules around the object and the diffusion coefficients which were experimentally estimated. The experimental results suggest that characteristic features of motion can be created based on the three-dimensional shape of the object.

摘要

我们在水面上开发了一个自行驱动的物体,它由一个塑料杯和一个樟脑圆盘组成,以反映其在运动中的三维形状。该自行驱动的物体的运动动力是表面张力的差异,表现出运动和静止之间的振荡运动。振荡运动的周期和最大速度分别随杯高而增加和减少。基于樟脑分子的扩散,使用 7-羟基香豆素间接观察到了两种扩散系数。基于樟脑分子在物体周围的扩散以及实验估计的扩散系数的数值计算,可以再现振荡运动的周期随 的实验结果。实验结果表明,可以基于物体的三维形状来创建运动的特征。

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