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Name: |
Dr G Moebus |
Organisation: |
University of Sheffield |
Department: |
Materials Science and Engineering |
Current EPSRC-Supported Research
Topics: |
Biomaterials
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Design & Testing Technology
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Manufact. Enterprise Ops& Mgmt
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Manufacturing Machine & Plant
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Materials Characterisation
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Current EPSRC Support |
EP/T006390/1 | An X-ray Micro-Computed Tomography Facility with in-situ/in operando testing. | (C) |
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Previous EPSRC Support |
EP/H001298/1 | Building Ceramic Metamaterials from Nanoparticles: A combined Modelling, Tomography and In-situ Loading Study. | (P) |
EP/H001220/1 | Building Ceramic Metamaterials from Nanoparticles: A combined Modelling, Tomography and In-situ Loading Study. | (C) |
EP/G030677/1 | Feasibility study on monitoring of radiation-induced nanoscale stress wave acoustic emission from crystalline wasteforms | (C) |
EP/G036748/1 | Basic Technology Nanorobotics : Transfer to applications, new science and industry | (C) |
EP/G063389/1 | Giants of the Infinitesimal | (C) |
EP/F062710/1 | Nanoparticle and Element Distribution Studies of Ion Implantation Processes | (P) |
EP/F010109/1 | Directed Reconfigurable Nanomachines | (C) |
EP/E034055/1 | Ultimate Microsocopy: Wavelength-Limited Resolution Without High Quality Lenses | (C) |
GR/S85689/01 | BASIC TECHNOLOGY: Nanorobotics - Technologies for Simultaneous Multidimensional Imaging & Manipulation of Nanoobjects | (C) |
GR/A00041/02 | AF: QUANTITATIVE STRAIN-MAPPING IN THIN-FILM SYSTEMS BY COMPLEMENTARY ELECTRON MICROSCOPY TECHNIQUES | (P) |
GR/A00041/01 | AF: QUNATATIVE STRAIN-MAPPING IN THIN-FILM SYSTEMS BY COMPLEMENTARY ELECTRON MICROSCOPY TECHNIQUES | (P) |
GR/M81786/01 | HETERO INTERFACE STRUCTURE DETERMINATION BY SIMULTANEOUS ENERGY MINIMISATION AND QUANTITATIVE HREM | (P) |
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Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator
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