Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Employer
- MOHAMMED VI POLYTECHNIC UNIVERSITY
- Technical University of Munich
- University of British Columbia
- ETH Zurich
- ETH Zürich
- Institute for bioengineering of Catalonia, IBEC
- Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S)
- Linköping University
- Maastricht University (UM)
- Technical University Of Denmark
- University of Aveiro
- Adam Mickiewicz University, Poznań
- Basque Center for Macromolecular Design and Engineering, POLYMAT Fundazioa
- CNRS
- Contipro a.s.
- Ghent University
- INSERM
- Institute of Fundamental Technological Research Polish Academy of Sciences
- Lodz University of Technology
- Medical University of Gdańsk
- New York University
- Politecnico di Milano
- Polymer Institute of the Slovak Academy of Sciences
- Pratt Institute
- Queen Mary University of London
- SciLifeLab
- Shinshu University
- The University of Arizona
- ULB
- Universidade de Coimbra
- Universidade de Vigo
- Universidade do Minho
- University of Mainz
- University of Manchester
- University of Würzburg
- Università degli studi di Brescia
- Université de Lorraine - Laboratoire d'Etudes et de Recherche sur la matériau bois
- Uppsala universitet
- 28 more »
- « less
-
Field
-
. Dynamic covalent hydrogels (DCHs) are an emerging class of polymer networks that uniquely combine the tunability of reversible covalent bonds with the robustness of permanent networks, enabling independent
-
in technological development for designing the functions of water-containing materials, such as hydrated minerals and hydrogels. We welcome applications from individuals who are highly motivated
-
an injectable hydrogel-based nanofibrous system serving as a scaffold for NP cells, an RNA delivery vehicle, and an NP crack filler in degenerated IVDs. This multifunctional material could aid IVD height
-
formulations (e.g. hydrogels). Lithography for multiscale hierarchical 3D substrates, e.g. 3D nanoimprint, 3D deep UV or 3D X-ray lithography. Bottom-up tissue engineering based on micro and nanoengineered
-
formulations (e.g. hydrogels). Lithography for multiscale hierarchical 3D substrates, e.g. 3D nanoimprint, 3D deep UV or 3D X-ray lithography. Bottom-up tissue engineering based on micro and nanoengineered
-
and 2 of article 6 of the Research Grant Regulations of the Foundation for Science and Technology. 6. Work plan: Development and characterization of novel sustainable materials, including hydrogels and
-
are motivated to work in a laboratory environment. Experience in one or more of the following areas is considered an asset, but is not required in all domains: wet lab work with hydrogels or complex
-
clinical decision-making within the framework of precision medicine. https://nastalylab.gumed.edu.pl THE RESPONSIBILITIES OF THE PERSON EMPLOYED IN THIS POSITION WILL INCLUDE: Co-leading R&D activities
-
responsibilities: In READY-GUT we develop ready-to-use 3D hydrogel scaffolds for cell culture of intestinal models. The candidate will participate in the product validation and the route-to-market strategy
-
Number req26413 Department James C Wyant Coll Optical Sci Department Website Link https://optics.arizona.edu/ Location Tucson Campus Address Tucson, AZ USA Position Highlights Advance groundbreaking