Physicists have taken a major step toward using AI not just to analyze data, but to uncover entirely new laws of nature. By ...
MIT postdoctoral associate Arunav Kumar discusses his work on magnetohydrodynamic stability, plasma control in tokamaks, and ...
An international team of physicists has achieved a significant advance in laser science, demonstrating for the first time a ...
Plasma, the fourth state of matter, consists of a gas in which electrons are no longer bound to atoms, which allows ...
EM, biochemical, and cell-based assays to examine how Gβγ interacts with and potentiates PLCβ3. The authors present evidence for multiple Gβγ interaction surfaces and argue that Gβγ primarily enhances ...
Abstract: We present ComputPlasma, a Python-based plasma simulation framework developed to support research in semiconductor process modeling, particularly for plasma-assisted etching and deposition ...
Comprehensive computational framework for REBCO HTS coils and plasma physics applications. Features validated 7.07T superconducting magnet designs, Lentz soliton simulation with interferometric ...
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Creating a Python simulation of a tipping stick
Learn how to create a Python simulation of a tipping stick! In this video, we guide you step by step through coding a physics-based simulation that models tipping motion, friction, and torque. Perfect ...
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Circular flying pig simulation in Python made simple
Learn how to create a circular flying pig simulation in Python in this step-by-step tutorial! This video breaks down the coding process, making it simple for beginners and Python enthusiasts to follow ...
Nanofabrication engineers often rely on fluorocarbon-based plasmas to etch silicon dioxide (SiO₂), but polymerization from these chemistries can cause non-uniformity and process drift. Bernet et al.
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