Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
for three consecutive periods (2014-2018 and 2018-2022 and 2023-2026). ICN2 comprises 20 Research Groups, 7 Technical Development and Support Units and Facilities, and 2 Research Platforms, covering different
-
than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoctoral Researcher in Time-resolved X-ray Nanoimaging for Semiconductor Reliability Mission
-
than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoctoral Researcher in Data-driven X-ray Nanoimaging for Semiconductor Metrology 1 Mission
-
diagnostic methodology for metallic lithium plating in industry-relevant cell formats. The approach is fundamentally based on diffraction and small-angle scattering techniques using both X-rays and neutrons
-
, with particular emphasis on battery science, catalysis, and the investigation of glasses and other disordered systems. The beamline’s core techniques are high-speed multidimensional X-ray diffraction and
-
materials science beamline specialising in X-ray diffraction and full-field imaging techniques. The beamline serves a very wide user community, spanning physics and chemistry to medical science. A significant
-
time-of-flight secondary ion mass spectrometry (ToF-SIMS), scanning electron microscopy (SEM), and X-ray diffraction (XRD). Experience in data reduction of big spectroscopy, mass spectrometry, and image
-
them The Opportunity The Monash X-ray Platform (MXP) is an ISO 9001-certified, open-access research facility and one of Australia’s largest in-house X-ray facilities, providing advanced X-ray diffraction
-
of the engineer will be to develop, support and work on the photonic-chip based multimodal TIRF optical microscopy set-up. In addition, the engineer should support the design and build advanced optical diffraction
-
complementary spectroscopy, diffraction, microscopy and chemical/impurity analysis. The project will explore how Magnox and AGR graphites differ from modern candidate graphite grades, how treatment or recycling