Sort by
Refine Your Search
-
Listed
-
Employer
-
Field
-
, construction, and optimization of synthetic biological systems and enzyme engineering workflows. Execute advanced molecular biology techniques, including DNA manipulation, PCR, and molecular cloning. Conduct
-
Keeping track of expenditure and remaining budget in an organized manner, ensuring that the spending is optimized and on track concerning goals set for the grant Develop ideas for application of research
-
behavior of floating breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling • Perform Computational Fluid Dynamics (CFD) simulations to optimize the design and performance of floating
-
students and research assistants. Maintain optimal experiment progress in the laboratory or in the research work undertaken. Perform other related duties incidental to the work described therein. Job
-
this role, you will characterize mixtures of pharmaceutical excipients and drug materials to develop methodologies for screening hot-melt extrusion formulations and selecting optimal operating conditions
-
, contributing to the optimization of LNP-based therapies. Job Description Conduct cutting-edge research using high-resolution light microscopy to study LNP trafficking. Investigate endocytic pathways and payload
-
. Carry out naval architecture calculations, i.e., stability, resistance, structural analysis, etc. iv. Carry out ship and system design optimization for electric ships. Coordinate procurement and liaison
-
perform ingredient techno-functional property tests with the support of the team members. ii. Lead the designing of food processing flow with optimized life cycle assessments (LCA) and Techno-Economic
-
these responsibilities in the project: Perform fermentation and optimization of GRAS microorganisms at 1-10 L fermentation scale. Design and optimise downstream bioprocessing for protein recovery. Perform characterization
-
yeast and fungi for food ingredient and biochemical production. The specific goals are: 1. Metabolic engineering of Yarrowia and Candida yeasts for organic acid production 2. Design and optimization