Sort by
Refine Your Search
-
Listed
-
Employer
- Linköping University
- Lulea University of Technology
- Lunds universitet
- Swedish University of Agricultural Sciences
- Umeå University
- Blekinge Institute of Technology
- Karolinska Institutet, doctoral positions
- Linköpings universitet, ITN
- Luleå University of Technology
- Luleå tekniska universitet
- SciLifeLab
- The Swedish University of Agricultural Sciences
- University of Lund
- 3 more »
- « less
-
Field
-
conversion. Integration of developed materials into soft and deformable thermal energy-harvesting devices. Characterization and optimization of the thermoelectric, electrochemical, and energy-conversion
-
optimization of the electrical, electrochemical, mechanical, and energy-conversion performance of materials and devices. Fabrication and validation of multi-cell devices under representative low-grade heat
-
materials. Integration of developed materials into soft and deformable thermal energy-harvesting devices. Characterization and optimization of the electrical, electrochemical, mechanical, and energy
-
methodologies for evaluating suitable storage sites and optimized lined rock cavern designs; - publish research findings in leading international scientific journals; - present research at national and
-
modelling, laboratory testing and field investigations; - participate in site investigations and data collection in northern Sweden; - develop methodologies for evaluating suitable storage sites and optimized
-
PhD Position in Engineering Materials Project: Development and Characterization of Advanced Sorbents
production of materials – mainly metallic and ceramic – as well as application aspects. PROJECT DESCRIPTION The PhD student will focus on the synthesis, optimization, and characterization of advanced sorbent
-
emphasis will be devoted to practical problems in economics and finance, like the construction of high-dimensional optimal portfolios. Motivated by the widespread application of sample generalized inverses
-
directions: Autonomous Underwater Robot Navigation in Aquatic Environments - Optimization-based path planning in aquatic environments - State Estimation and Sensor Fusion for Localization and Mapping
-
characterization of HIV RNA/DNA in primary material as well as model cells using Oxford Nanopore sequencing and complementary molecular and computational approaches. The doctoral student will help develop, optimize
-
) productivity, optimization and efficiency, and (4) implementation and use of innovative energy solutions. The PhD student position is part of the newly funded KKS Synergy project WorkFlex+ which focuses