Sort by
Refine Your Search
-
Listed
-
Category
-
Country
- United States
- United Kingdom
- France
- Portugal
- Germany
- Netherlands
- Spain
- Denmark
- Sweden
- China
- Belgium
- Singapore
- Morocco
- United Arab Emirates
- Canada
- Norway
- Macau
- Finland
- Poland
- Switzerland
- Italy
- Australia
- Japan
- Czech
- Luxembourg
- Ireland
- Hong Kong
- Austria
- Taiwan
- Vietnam
- Israel
- Lithuania
- Greece
- Mexico
- South Africa
- Andorra
- Worldwide
- Brazil
- New Zealand
- Romania
- Croatia
- Europe
- India
- Latvia
- Slovenia
- Cyprus
- Estonia
- Malaysia
- Saudi Arabia
- 39 more »
- « less
-
Program
-
Field
- Medical Sciences
- Computer Science
- Economics
- Engineering
- Biology
- Science
- Business
- Materials Science
- Education
- Psychology
- Mathematics
- Chemistry
- Arts and Literature
- Environment
- Social Sciences
- Humanities
- Earth Sciences
- Law
- Linguistics
- Sports and Recreation
- Electrical Engineering
- Philosophy
- Physics
- Design
- Statistics
- 15 more »
- « less
-
, numerical methods, and Earth system modeling to develop and evaluate a coupled xylem–phloem transport framework that translates multiscale physics into next-generation vegetation model schemes. Key
-
vegetation dynamics, carbon cycle processes, or climate–biosphere interactions. • Familiarity with benchmarking frameworks for ecosystem and climate models. Website for additional job details https
-
Model. Int. J. Hydrog. Energy 2014, 39 (9), 4516–4530. https://doi.org/10.1016/j.ijhydene.2014.01.036.  ; [3] Carral, C.; Mele, P. Modeling the Original and Cyclic Compression Behavior of Non-Woven
-
Biotechnology and Bioprocesses, Membrane Technology, Chemicals and Materials, Resource Recovery, and Modeling & Artificial Intelligence. By harnessing its cross-cutting, interdisciplinary, and transformative
-
. The work will consist of further developing existing published numerical models based on SILVACO software, in particular to integrate CIGS material properties, while verifying and validating existing
-
molecular simulations, and cutting-edge AI techniques including graph neural networks (GNNs) and large language models (LLMs) to accelerate experimental design and discovery of novel materials. The research
-
of errors between model predictions and post-operative reality This work will be carried out by the Biomécamot team (https://www.timc.fr/BiomecaMot ) at the TIMC laboratory, which is part of the CNRS's
-
University of California San Francisco | San Francisco, California | United States | about 9 hours ago
: 87392BR Supervises staff involved in providing clinical patient care. Assists in ensuring the quality of patient care delivery in a specific patient care area and serves as a role model for professional
-
(WP4), led by IEM, focuses on the design, modeling, and optimization of a laboratory-scale EC-MF pilot using promising electrocatalytic materials synthesized in WP1.3. The postdoctoral researcher will
-
& Modeling: Develop and simulate numerical models of damage and failure in aerospace structures, including FEA for metamaterials. Materials Design & Characterization: Study and optimize metamaterials and