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Name: |
Professor CC Constantinou |
Organisation: |
University of Birmingham |
Department: |
Electronic, Electrical and Computer Eng |
Current EPSRC-Supported Research
Topics: |
Biomaterials
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Biomaterials
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Biomechanics & Rehabilitation
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Chemical Synthetic Methodology
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Cold Atomic Species
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Condensed Matter Physics
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Energy Storage
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Materials Characterisation
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Med.Instrument.Device& Equip.
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Microsystems
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Optoelect. Devices & Circuits
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Particle Technology
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RF & Microwave Technology
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Current EPSRC Support |
EP/V034278/1 | EPSRC Capital Award for Core Equipment 2020 University of Birmingham | (P) |
EP/T02349X/1 | EPSRC Capital Award for Core Equipment | (P) |
EP/T001046/1 | UK National Quantum Technology Hub in Sensing and Timing | (C) |
EP/S02297X/1 | EPSRC Centre for Doctoral Training in Topological Design | (C) |
EP/P020615/1 | 10 MHz to 1.1 THz Vector Network Analyser | (C) |
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Previous EPSRC Support |
EP/M016269/1 | Micromachined Circuits For Terahertz Communications | (C) |
EP/M013294/1 | UK Quantum Technology Hub for Sensors and Metrology | (C) |
EP/L019078/1 | Terahertz Technology for Future Road Vehicles | (C) |
EP/I010491/1 | PATRICIAN: New Paradigms for Body Centric Wireless Communications at MM Wavelengths | (P) |
EP/E049095/1 | Field-Theoretical Approach to Complex Networks | (C) |
EP/E029922/1 | Wearable Antennas for Body-Centric Wireless Networks | (C) |
GR/T23725/01 | Modelling Data Loss in Large Packet-Switched Communication Networks | (P) |
GR/S03805/01 | CHARACTERISATION OF ON-BODY COMMUNICATION CHANNELS | (C) |
GR/R69143/01 | ROPA: A thermodynamic model quantifying the congestion phase transition in packet-switched networks | (P) |
GR/J96895/01 | INSTRUMENTATION FOR MONITORING PROCESSES WITHIN SEPARATORS (PRO 47) | (C) |
GR/K25274/01 | RADIOWAVE TRANSMISSION THROUGH OBSTACLES USING THE PARABOLIC WAVE EQUATION METHOD | (P) |
GR/H39543/01 | DETERMINISTIC MODELLING FOR RADIO COMMUNICATIONS FOR MEDIUM TO MICROWAVE FREQUENCIES | (C) |
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Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator
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