Center for Core Research Facilities43
There are 7 core public infrastructures existing which successfully support the MIREBraiN program: (M: Emerging Materials Science; I: Information & Communication Engineering; R: Medical Robotics; E: Green Energy Research; B: Brain Science; and N: New Biology Research). These represent DGIST’s specialized research fields. Under the goal of “establishing excellence in educational and research
infrastructures”, CCRF has pursued the construction, planning, and introduction of public research facilities and equipment; the promotion of the public use of infrastructures; and the provision of internal and external services. In addition, we continue to introduce and operate efficient management systems to increase the user’s convenience regarding the constructed educational and research infrastructures
In addition, CCRF aims to secure optimal conditions for its infrastructure and provide research support services. We seek to promote efficiency in equipment operation on a national level and to contribute to the advancement of research infrastructures in Yeongnam province. We also hope to enhance local industries by opening world-class DGIST infrastructures constructed in our area to not only internal researchers, but also external organs and corporations.
<br><br><b> <a href="http://ccrf.dgist.ac.kr" target="_blank">Center for Core Research Facilities
Homepage</a></b>
Subject
- atomic layer deposition 2
- CANCER-CELLS 2
- Carbides 2
- Clusters 2
- Copper 2
- DEATH 2
- Diffusion barrier 2
- Dislocations 2
- FeMnAlC 2
- Film thickness 2
Date issued
- 2020 - 2025 17
- 2012 - 2019 26
Co-Author(s)
Related Keyword
Recent Submissions
- Distinct roles of Nb, Ti, and V microalloying elements on the fire resistance of low-Mo steels
- Microstructural evolution and strength-toughness behavior of fire-resistant steel under thermo-mechanical controlled processing
- Surface hardening of ductile austenitic lightweight steel through powder bed fusion 3D printing
- Mutual strengthening by fine MX precipitation and solute segregation on dislocations during complex low-cycle fatigue to simulate the seismic/fire situation in bainitic H-section steel
- Tetraoctylammonium Bromide Interlayer between NiLiOx and Perovskite for Light-Emitting Diodes
