关于感知分子时间:计算化学模拟与移动图像

IF 0.3 0 HUMANITIES, MULTIDISCIPLINARY
Arts Pub Date : 2024-07-17 DOI:10.3390/arts13040122
Andrea Rassell
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引用次数: 0

摘要

在人类尺度和纳米尺度之间,对时间的感知发生了根本性的转变。在媒体和科学技术飞速发展的时代,我们需要了解这些技术如何影响人类的感知和视觉文化。这篇文章从时间媒体理论和动态影像实践的角度探讨了计算分子模拟。我曾在一个物理化学研究小组担任创作研究员,在此基础上,我重点介绍两部描绘晶体结构的动态影像作品。一部是烟尘形成的纳米级计算模拟,另一部是展示糖溶解的持续视频艺术作品。计算分子模拟通过将极短的持续时间涂抹在较长的可感知持续时间上,从而产生时间感。这一分析揭示了媒体作为一种建构的意识是如何干扰我们的时间感知(对时间的感知)的,而出乎意料的是,屏幕成为了科学家专业时间理解的同谋。视频呈现的空间和时间尺度大相径庭,具有不同的时间感知效果:一个给人时间内的感觉,另一个给人时间外的感觉。最终,计算模拟作为同构媒体出现了,它具有明确的美学特性,将我们与隐含的、抽象的化学反应能量学联系在一起。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Perceiving Molecular Time: Computational Chemical Simulations and the Moving Image
The perception of time undergoes a radical shift between the human scale and the nanoscale. In an age of rapidly evolving media and scientific technologies, we need to understand how these impact human perception and visual culture. This essay explores computational molecular simulations through the lenses of temporal media theory and moving image practice. Emerging from a creative fellowship with a physical chemistry research group, I focus on two moving image works that depict crystalline structures. One is a nanoscale computational simulation of soot formation and the other is a durational video artwork showing the dissolution of sugar. Computational molecular simulations are shown to produce a feeling of time by smearing an extremely short duration across a longer perceptible duration. This analysis uncovers how the awareness of media as a construct troubles our chronoception (perception of time), while unexpectedly, the screen becomes complicit in scientists’ expert temporal understanding. The videos present vastly different spatial and temporal scales and have different chronoceptive effects: one gives a sense of being within time, the other across time. Ultimately, computational simulations emerge as isomorphic media that have explicit aesthetic properties that connect us to the implicit, abstract energetics of chemical reactivity.
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来源期刊
Arts
Arts HUMANITIES, MULTIDISCIPLINARY-
自引率
40.00%
发文量
104
审稿时长
11 weeks
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