Nanofluidics and Lab-on-a-Chip Devices
The time-dependent Schrödinger equation is a fundamental equation in quantum mechanics that describes how the quantum state of a physical system evolves over time. It plays a crucial role in understanding how particles behave at the nanoscale, making it essential for analyzing quantum effects and their influence on nanofluidic transport phenomena, such as diffusion and flow behavior in confined spaces.
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