Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
into the experimental and numerical characterisation of selective paste intrusion particle‑bed printed concrete 3D infill patterns under single and multiaxial loading conditions. You will perform experimental single and
-
ammonia decomposition. Within this project, we are seeking for a PhD candidate to develop In Situ and Operando characterization for the different catalysts that will be tested and modelled by the other
-
, gel permeation chromatography, dynamic light scattering, aqueous electrophoresis, and transmission electron microscopy, confocal microscopy, cell culture and 3D epithelial models is required
-
the lab that range from antigen delivery for assaying antigen-specific cells in autoimmunity to fabricating 3D models of lymphoid tissue to design and implementation of synthetic receptor systems. Research
-
an interdisciplinary research environment that includes additive manufacturing, advanced surface post-processing, dental prosthetics, process monitoring, data-driven modelling, and digital traceability. Additive
-
A post-doctoral position is available to advance the development of a 3D human lymphoid organ model and apply this model to test new mRNA vaccination platforms. The position is fully funded for 2.5
-
disorders. Its research combines primary human and mouse muscle stem cells, CRISPR-based genome editing, non-viral delivery of nucleic acid therapeutics, human and mouse disease models, and single-cell
-
. Responsibilities: • Mentor technicians and graduate students • Generate multi-cellular 2D and 3D culture models to incorporate different cell types • Develop cellular, molecular, and functional assays to examine AD
-
Summary The Department of Radiology and Imaging Sciences at the University of Utah advances imaging technologies through activities including medical device design and prototyping, modeling, data analysis
-
-rozman/home ) and Dr. Matej Krajnc (https://matejkrajnc.splet.arnes.si ) on topics related to the role of activity in 2D and 3D tissue dynamics, focusing on computational approaches such as the vertex