Sort by
Refine Your Search
-
Listed
-
Country
-
Employer
- Nanyang Technological University
- SINGAPORE INSTITUTE OF TECHNOLOGY (SIT)
- National University of Singapore
- The University of Queensland
- Zintellect
- King's College London
- LNEC, I.P.
- Macquarie University
- Nova School of Business and Economics
- Singapore University of Technology & Design
- Tohoku University
- UNIVERSITY OF SOUTHAMPTON
- University of Birmingham
- University of Nottingham
- University of South-Eastern Norway
- University of the Arts London
- 6 more »
- « less
-
Field
-
an integrated process for converting CO2 into valuable chemicals using renewable energy. The approach combines biotechnological and electrocatalytic processes to efficiently transform CO2 into useful chemicals
-
a new window Converted File JDPS G5.33- Storytelling Fellow (2).docx.pdf – 118KB Opens in a new window Additional document Call for applications-Storytelling Research Fellowship 2627.pdf – 244KB Opens
-
. Supported Areas for START - Engineering Energy Resilience: Power electronic converters for distributed energy resources and microgrids; High voltage DC transmission and distribution components and systems
-
qualifications. The respective scores can only be used if they are officially converted to the Portuguese scoring scale (by DGES – Direção Geral do Ensino Superior or by a public higher education institution
-
suitability for the required profile; For degrees obtained abroad applicants must submit the recognition of the academic degree and the converted final grade to the Portuguese grading scale (following
-
technologies to reduce emissions and enhance energy security. This research aims to develop an integrated process for converting CO2 into valuable chemicals using renewable energy. The approach combines
-
epidemiology assessments. Learn how epidemiologic findings are translated into actionable public health information to support preparedness, response, and recovery activities. Gain experience converting
-
to advance the sodium ion battery technology: (1) Develop new processing protocols to convert the low-cost precursors to highly performing anode materials, in terms of improved specific capacity
-
floating breakwater systems, ensuring structural stability and durability. 4. Design and Integration Develop innovative designs for floating breakwaters that integrate wave energy converters (WECs), tidal