Amir Pahlavan

@apahlavan.bsky.social

Soft, Fluid, Living Matter Lab at Yale SEAS (https://pahlavan.yale.edu/)

Researchers have shown that the point at which ketchup, toothpaste, and other complex fluids undergo a solid-to-liquid transition can be predicted from the properties of the substance while it is still a solid. The insight could guide the control of this industrially important class of fluids.

Predicting When Ketchup Will Start Flowing

For a wide range of complex fluids, the transition from solid-like at rest to liquid-like when pushed can be predicted from properties of the at-rest state.

physics.aps.org

Our paper on using small molecules that self-assemble on polymer surfaces to engineer wearable energy harvesters is out today in Science Advances! Learn about how scaling analysis and fundamental soft matter can impact technology. www.science.org/doi/10.1126/...

Compressing slippery surface-assembled amphiphiles for tunable haptic energy harvesters

Molecules that self-organize into slippery planes are used to engineer functional and comfortable energy harvesters.

science.org

📣 Excited to receive the 💥 NSF CAREER 💥 Award. Our group is looking for PhD students and postdocs interested in the Nonlinear Dynamics and the Physics of Living Systems, with support from NSF, HFSP, and other sources. We’d appreciate your help in spreading the word! @ucsdphysci.bsky.social

Here’s a Christmas present for y’all: a new physics post! I’ve done these things on “the other side”—let’s see how many people are interested on 🦋! I’ll be talking about a famous principle in classical mechanics: that of “least action.” And I’ll tell you why it’s a misnomer! Buckle up! 1/26

Image source: https://www.empireonline.com/movies/features/last-action-hero