<?xml version="1.0" encoding="UTF-8"?><oembed><type>video</type><version>1.0</version><html>&lt;iframe src=&quot;https://www.loom.com/embed/3fefb7772dda493ab8d4224a6d585ca5&quot; frameborder=&quot;0&quot; width=&quot;1280&quot; height=&quot;960&quot; webkitallowfullscreen mozallowfullscreen allowfullscreen&gt;&lt;/iframe&gt;</html><height>960</height><width>1280</width><provider_name>Loom</provider_name><provider_url>https://www.loom.com</provider_url><thumbnail_height>960</thumbnail_height><thumbnail_width>1280</thumbnail_width><thumbnail_url>https://cdn.loom.com/sessions/thumbnails/1e68d7914e584ea899f1972b9028a845-full-1680746822341.jpg</thumbnail_url><duration>467.425089</duration><title>3. Inverse Physics-ML for Additive Manufacturing - 040423</title><description>Demo workflow 3 of 3 in a Pasteur4D preview series, demonstrating several ML-accelerated multiphysics workflows in system-of-systems optimization of nuclear SMR technologies.
→ Demo 1: heat exchanger design optimization — https://www.loom.com/share/287abd9ebfb644d39740b9096145de85
→ Demo 2: multiphysics uncertainty propagation of full nuclear fission reactor — https://www.loom.com/share/05e4f4094706475da55183ab37532da8
→ Demo 3: end-to-end optimal additive manufacturing of aerospace heat exchanger surfaces — https://www.loom.com/share/1e68d7914e584ea899f1972b9028a845</description></oembed>