AI has cracked a key mathematical puzzle for understanding our world
Partial differential equations can describe everything from planetary motion to plate tectonics, but they’re notoriously hard to solve.
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%0 Journal Article
%1 hao2020cracked
%A Hao, Karen
%D 2020
%J MIT Technology Review
%K 35q35-pdes-in-connection-with-fluid-mechanics 68t07-artificial-neural-networks-and-deep-learning
%T AI has cracked a key mathematical puzzle for understanding our world
Partial differential equations can describe everything from planetary motion to plate tectonics, but they’re notoriously hard to solve.
%U https://www.technologyreview.com/2020/10/30/1011435/ai-fourier-neural-network-cracks-navier-stokes-and-partial-differential-equations/amp/
@article{hao2020cracked,
added-at = {2020-11-03T23:37:57.000+0100},
author = {Hao, Karen},
biburl = {https://www.bibsonomy.org/bibtex/273d617efc1d17be2f63105f86b4b78b0/gdmcbain},
interhash = {153d64f56332c74451001005f9a7893d},
intrahash = {73d617efc1d17be2f63105f86b4b78b0},
journal = {MIT Technology Review},
keywords = {35q35-pdes-in-connection-with-fluid-mechanics 68t07-artificial-neural-networks-and-deep-learning},
month = oct,
timestamp = {2020-11-03T23:42:45.000+0100},
title = {AI has cracked a key mathematical puzzle for understanding our world
Partial differential equations can describe everything from planetary motion to plate tectonics, but they’re notoriously hard to solve.
},
url = {https://www.technologyreview.com/2020/10/30/1011435/ai-fourier-neural-network-cracks-navier-stokes-and-partial-differential-equations/amp/},
year = 2020
}