RSS feed source: Volcano Discovery.com--Global earthquake monitor

Support Us – Help Us Enhance Our Services! We’re passionate about delivering the latest volcano and earthquake data from around the globe — just for you. However, maintaining our website and free apps requires significant time, effort, and resources.
Your support helps us expand our hardware and software capabilities and empowers our dedicated editorial team. Our mission is to provide uninterrupted, real-time updates whenever an earthquake strikes or a volcano erupts — and your donations make this possible. Every contribution, big or small, is deeply appreciated. If you find our information valuable and want to help us add new features, create compelling content, and improve our technology, please consider making a donation: Donate with Card or Apple/Google Pay: Donate with PayPal: Planned Features: Improved multilingual support Tsunami alerts Faster responsiveness Thanks to your past donations, we have recently added: Design upgrades Detailed earthquake statistics Additional seismic data sources Download the Volcanoes & Earthquakes app to stay among the first to receive the fastest seismic and volcano alerts online:
Android | iOS

Thank you for being part of our mission!

Click this link to continue reading the article on the source website.

RSS feed source: Volcano Discovery.com--Global earthquake monitor

Research theme area:
Optimization of end-plates of fuel cells through topology optimization methods, with an emphasis on integrating stress, displacement, and temperature constraints to improve efficiency and durability.

Abstract:
The candidate will collaborate with researchers from the Research and Development (R&D) project SOFC – The Future of Ethanol in the Transportation Sector, at Polytechnic School of the University of São Paulo. Summary of the program and projects can be found at the RCGI website (https://sites.usp.br/rcgi/).
One of the research lines of this project is dedicated to the development and optimization of end plates, critical structural components that ensure the integrity and efficiency of fuel cells. The main objective of this work is to develop a computational model for the topology optimization of these end plates. The optimization problem focuses on minimizing the volume, subject to multiphysics constraints that ensure structural integrity, uniform pressure distribution, and thermal management.

Click this link to continue reading the article on the source website.