Liquid metal solves maze

These are supplementary videos for the paper ``Liquid Metal Solves Mazes'. The abstract of the paper is below.    A room temperature liquid metal is a metal whose melting point is around room temperature. We use liquid metal gallium due to its non-toxicity. A physical maze is a a connected set of Euclidean domains separated by impassable walls. We demonstrate that a maze filled with sodium hydroxide is solved by a gallium droplet when direct current is applied between start and destination loci. During the maze solving the droplet stays compact due to its large surface tension, navigate along lines of the highest electrical current due its high electrical conductivity, and goes around corners of the maze's corridors due to its high flexibility. The  droplet maze solver has a long life-time due to negligible vapour of the liquid gallium.

Tags
Data and Resources
To access the resources you must log in

This item has no data

Identity

Description: The Identity category includes attributes that support the identification of the resource.

Field Value
PID https://www.doi.org/10.5281/zenodo.3344993
URL https://dx.doi.org/10.5281/zenodo.3344993
URL http://dx.doi.org/10.5281/zenodo.3344993
URL https://figshare.com/articles/Liquid_metal_solves_maze/9119663
Access Modality

Description: The Access Modality category includes attributes that report the modality of exploitation of the resource.

Field Value
Access Right Open Access
Attribution

Description: Authorships and contributors

Field Value
Author Adamatzky, Andrew
Author Chiolerio, Alessandro
Author Szacilowski, Konrad
Publishing

Description: Attributes about the publishing venue (e.g. journal) and deposit location (e.g. repository)

Field Value
Collected From Datacite; figshare
Hosted By Zenodo; figshare
Publication Date 2019-07-21
Publisher Zenodo
Additional Info
Field Value
Language UNKNOWN
Resource Type Audiovisual; Dataset
keyword liquid metal, gallium, unconventional computation
system:type dataset
Management Info
Field Value
Source https://science-innovation-policy.openaire.eu/search/dataset?datasetId=dedup_wf_001::19d351e372d6912e4b841e634f2ea6e3
Author jsonws_user
Version None
Last Updated 11 January 2021, 00:28 (CET)
Created 11 January 2021, 00:28 (CET)