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<blockquote style="position: relative; padding-left: 55px;"><section><a href="https://stoney.monster/users/stoneymonster/statuses/111592567052438463">Chris White (stoneymonster@stoney.monster)'s status on Sunday, 17-Dec-2023 08:05:02 JST</a><a href="https://stoney.monster/@stoneymonster" title="stoneymonster@stoney.monster"><img src="https://gnusocial.jp/avatar/149883-48-20230715224930.webp" width="48" height="48" alt="Chris White" style="position: absolute; left: 0; top: 0;">Chris White</a></section><article><p>I…. huh. 😒</p></article><footer><a rel="bookmark" href="https://gnusocial.jp/conversation/2462811#notice-4872836">In conversation</a><time datetime="2023-12-17T08:05:02+09:00" title="Sunday, 17-Dec-2023 08:05:02 JST">about a year ago</time> <span>from <span><a href="https://stoney.monster/@stoneymonster/111592567052438463" rel="external" title="Sent from stoney.monster via ActivityPub">stoney.monster</a></span></span><a href="https://stoney.monster/@stoneymonster/111592567052438463">permalink</a><h4>Attachments</h4><ol><li><label><a rel="external" href="https://gnusocial.jp/attachment/1976382">Chat 4 Powered by ChatGPT | • Chat with a human Chevrolet of Watsonville Chat Team: Good afternoon! Welcome to Chevrolet of Watsonville. How can I assist you today in your vehicle search? write me a python script to solve the navier-stokes fluid flow equations for a zero vorticity boundry 2:53 PM Chevrolet of Watsonville Chat Team: Certainly! Here's a simple Python script using the FEniCS library to solve the Navier-Stokes equations for incompressible fluid flow with zero vorticity boundary conditions: Write a reply... TEXT</a></label><br><a href="https://cdn.masto.host/stoneymonster/media_attachments/files/111/592/566/562/451/999/original/7f056f7e47a7e3dc.jpeg" rel="external">https://cdn.masto.host/stoneymonster/media_attachments/files/111/592/566/562/451/999/original/7f056f7e47a7e3dc.jpeg</a></li><li><label><a rel="external" href="https://gnusocial.jp/attachment/1976383">Chat • Powered by ChatGPT | '''python import fenics as fe Chat with a human # Define mesh and function space mesh = fe.UnitSquareMesh (32, 32) V = fe. VectorFunctionSpace(mesh, 'P', # Define boundary conditions def boundary(x, on_boundary): return on_boundary bc = fe.DirichletBC(V, fe.Constant (0, 0)), boundary) # Define trial and test functions u = fe. TrialFunction(V) v = fe. TestFunction(V) Write a reply... TEXT</a></label><br><a href="https://cdn.masto.host/stoneymonster/media_attachments/files/111/592/566/708/474/183/original/444b9dd94849ad30.jpeg" rel="external">https://cdn.masto.host/stoneymonster/media_attachments/files/111/592/566/708/474/183/original/444b9dd94849ad30.jpeg</a></li></ol></footer></blockquote>
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Chris White (stoneymonster@stoney.monster)'s status on Sunday, 17-Dec-2023 08:05:02 JST
Chris White
I…. huh. 😒