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Postdoc Position at University of Florida in computational material science
A computational materials science postdoctoral position is currently open in
the Department of Materials Science and Engineering under Tonks research
group at the University of Florida.
The position will involve the development of mesoscale models to predict the
coevolution of material microstructure and properties using the phase field
method coupled to other physics, such as mechanics and heat conduction.
The work will be carried out using the Multiphysics Object Oriented
Simulation Environment (MOOSE) framework, and will involve contributing to
the open-source MOOSE project.
The postdoctoral researcher will develop new phase field models to look at
physical phenomena in nuclear materials and other applications. They will
verify and validate the models, quantify their uncertainty, and improve the
numerical approach to increase efficiency. Finally, they will use the models
to investigate material performance. The research will also involve close
collaborations with experimentalists.
In addition, the postdoctoral researcher will be expected to present at
technical conferences and publish their work in high impact peer-reviewed
journals.
Preferred candidates should have working experience on phase field models
before. If you are interested, please email Dr. Tonks: [email protected]
A computational materials science postdoctoral position is currently open in
the Department of Materials Science and Engineering under Tonks research
group at the University of Florida.
The position will involve the development of mesoscale models to predict the
coevolution of material microstructure and properties using the phase field
method coupled to other physics, such as mechanics and heat conduction.
The work will be carried out using the Multiphysics Object Oriented
Simulation Environment (MOOSE) framework, and will involve contributing to
the open-source MOOSE project.
The postdoctoral researcher will develop new phase field models to look at
physical phenomena in nuclear materials and other applications. They will
verify and validate the models, quantify their uncertainty, and improve the
numerical approach to increase efficiency. Finally, they will use the models
to investigate material performance. The research will also involve close
collaborations with experimentalists.
In addition, the postdoctoral researcher will be expected to present at
technical conferences and publish their work in high impact peer-reviewed
journals.
Preferred candidates should have working experience on phase field models
before. If you are interested, please email Dr. Tonks: [email protected]
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