Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Employer
- Stony Brook University
- University of Arkansas
- California State University, San Bernardino
- East Carolina University
- Pennsylvania State University
- ETH Zurich
- FEUP
- ICN2
- McGill University
- The California State University
- The Ohio State University
- University of California
- University of California, Los Angeles
- University of Colorado
- University of Florida
- University of Luxembourg
- University of Minnesota
- University of Texas at Austin
- University of Twente (UT)
- University of Washington
- Washington State University
- AMOLF
- Amgen Scholars Program
- Baylor University
- Boise State University
- CEA
- CNRS
- California State University, Long Beach
- Chalmers University of Technology
- Christopher Newport University
- Harvard University
- Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association
- Indiana University
- Lawrence Berkeley National Laboratory
- MOHAMMED VI POLYTECHNIC UNIVERSITY
- Michigan State University
- Michigan Technological University
- Middlesex Community College
- Monash University
- NTNU - Norwegian University of Science and Technology
- National Aeronautics and Space Administration (NASA)
- National Institute for Materials Science (NIMS)
- North Carolina State University
- Princeton University
- SUNY University at Buffalo
- Texas A&M University
- The University of Iowa
- Universitat de les Illes Balears
- University of British Columbia
- University of Delaware
- University of Glasgow
- University of Graz
- University of Saskatchewan
- University of Texas at Arlington
- University of Texas at Dallas
- University of Texas at El Paso
- University of Utah
- University of Vienna
- Virginia Community College
- Łukasiewicz Research Network - Institute of Microelectronics and Photonics
- 50 more »
- « less
-
Field
-
lithium chloride brines through continuous crystallization and electrochemical integration. The goal of the subproject is to develop a predictive process model for the lithium refining process and support
-
significant experience and expertise in air-free synthetic methods (e.g., Schlenk and glovebox techniques), crystal growth and analysis using single-crystal X-ray diffraction, and spectroscopic characterization
-
, the oxidation state and the route. Your job is to control these factors, to grow single crystals that would settle various scientific questions, and then to extend the family. Main responsibilities Grow single
-
project aims to develop an innovative low-carbon process for producing battery-grade lithium hydroxide from recycled lithium chloride brines through continuous crystallization and electrochemical
-
Crystallography Facility (XRCF) to lead technical operations, scientific services, and educational missions in single-crystal and powder X-ray diffraction, pursuing new campus users, new equipment, and new
-
gating. The research will explore how the properties of atomically thin materials can be transformed when different two-dimensional crystals are brought together, creating artificial quantum systems with
-
, is seeking a highly motivated Doctoral Position. Our research investigates how crystal chemistry, structure, and dimensionality can be used to control and create functionality in complex inorganic
-
crystallization studies for the recovery of ammonia or ammonium from landfill leachates using an oscillatory flow reactor (OFR). Accordingly, the work plan will focus on optimizing the continuous precipitation
-
prerequisite for any use in nuclear safety; and, in the second year, tackling a high-value exploratory axis — generalizing PULSE to a continuous latent space, opening the door to any disordered crystal or alloy
-
of SQL or Database Queries. Experience reporting from healthcare decision support, patient accounting, contract management and/or claims scrubber systems. Proficiency with SAP Business Objects, Crystal