Sort by
Refine Your Search
-
Listed
-
Category
-
Country
- United States
- France
- Germany
- United Arab Emirates
- United Kingdom
- Norway
- Netherlands
- Spain
- Portugal
- Italy
- Belgium
- Singapore
- Sweden
- Poland
- Austria
- Denmark
- Switzerland
- Australia
- Canada
- China
- Japan
- Finland
- Ireland
- Estonia
- Hong Kong
- Luxembourg
- Mexico
- Brazil
- Czech
- Iceland
- New Zealand
- Romania
- Slovakia
- Slovenia
- Vietnam
- 25 more »
- « less
-
Program
-
Field
- Computer Science
- Economics
- Medical Sciences
- Engineering
- Mathematics
- Biology
- Science
- Earth Sciences
- Materials Science
- Chemistry
- Business
- Environment
- Education
- Physics
- Psychology
- Arts and Literature
- Humanities
- Electrical Engineering
- Social Sciences
- Law
- Philosophy
- Linguistics
- Sports and Recreation
- 13 more »
- « less
-
scales through advanced numerical modeling. Our research foci are located at both plate boundaries and within the plate interiors, inside the deep mantle and at the surface. To approach our aims, we
-
, field measurement campaigns, controlled laboratory experiments, and theoretical modelling of the physics of cold interfaces. Gliding on snow and ice is a key factor in many winter sports (cross-country
-
, optomechanics/nanomechanics. You have or are about to obtain a PhD in at least one of the following areas: nano-mechanics/nanoelectromechancics, OR multi-physics modelling (numerical simulations, e.g. matlab
-
drive performance. This role may work with multiple sources of funding including restricted gifts and grants as well as contracts. The full job description is available, here: https://openlearning.mit.edu
-
on the development, theoretical analysis, and optimal implementation of numerical methods for systems governed by multiphysics and multiscale differential models, including the use of parallel computing architectures
-
-fuels. It will involve studying the behavior of methanol synthesis catalysts under varying reaction conditions, proposing an associated kinetic model, and implementing the reaction kinetics into a
-
of this research project is to develop a quasi-atomic-scale 3D model of PEDOT:PSS fibres (a pi-conjugated, semiconducting polymer) dispersed in water. This polymer complex is a benchmark in numerous fields of energy
-
and numerical models that predict material deformation, force transmission to cells and the resulting changes in cellular mechanics and signalling. The position is primarily computational, but a
-
to represent PVD-functionalized electrodes without unnecessarily increasing computational cost. The work will combine fundamental modelling, numerical simulation and experimental validation, with a strong
-
of thermal effects on force generation, material properties, and geometric clearances. Validate numerical models against experimental results and data available in the scientific literature. Disseminate