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Researcher Details
 
Name: Professor M Mackley
Organisation: University of Cambridge
Department: Chemical Engineering and Biotechnology
Current EPSRC-Supported Research Topics:

Current EPSRC Support
There is no current EPSRC Support
Previous EPSRC Support
EP/H018913/1 Innovation in industrial inkjet technology - I4T(C)
EP/G060649/1 Soft NanoPhotonics Programme Grant (sNaP)(C)
EP/F028261/1 EPSRC Platform for Process, Product and Innovation(P)
EP/E025307/1 Multipass Rheometer Development (Multi-Project Equipment Grant)(P)
EP/E500951/1 Follow On: Plastic Microcapillary Film Development(P)
GR/T11821/01 The Microscale Polymer Processing Consortium for Macromolecular Engineering: Toolbox Development and Application(P)
GR/T11920/01 Next Generation Inkjet Technology: A Major UK Collaborative Initiative(C)
GR/R98679/01 PLATFORM: Platform for Process Innovation(P)
GR/R39214/01 Polymer Process Innovation(P)
GR/R13944/01 The Evaluation of a Novel Fibrous Oscillatory Flow Filter (Foff)(P)
GR/M77017/01 FLUID FLOW MEASUREMENT USING HIGH RESOLUTION DIGITAL PARTICLE IMAGE VELOCIMETRY (DPIV)(P)
GR/M60392/01 MICRO-SCALE POLYMER PROCESSING;MOLECULAR STRUCTURE TO PRODUCT PERFORMANCE ACROSS THE LENGTH SCALES.(P)
GR/M20020/01 THE DEVELOPMENT OF OSCILLATORY FLOW REACTORS FOR PROCESS INTENSIFICATION IN THE CHEMICALS INDUSTRY(P)
GR/M15903/01 THE EFFECT OF SLIP BOUNDARY CONDITIONS ON POLYETHYLENE PROCESSING(P)
GR/L50693/01 THE EVALUATION OF SOFT SOLID STRUCTURE DURING PROCESSING(P)
GR/K63221/01 OSCILLATORY FLOW MIXING TECHNOLOGY(P)
GR/K03005/01 RHEOLOGICAL & PROCESSING EVALUATION OF VISCOELASTIC MELTS AND PLASTICALLY DEFORMABLE SEMI SOLIDS(P)
GR/J40669/01 THE EFFECT OF OSCILLATORY FLOW IN BAFFLED TUBES ON MULTI PHASE TRANSFER PROCESSES(P)
GR/G26679/01 PULSATILE FLOW IN BAFFLED TUBES : THE EFFECT OF NON NEWTONIAN FLUIDS(P)
GR/F31670/01 MICRO MECHANISMS FOR FLOW AND FILTRATION OF PARTICULATE DRILLING FLUIDS(P)
GR/F26218/01 PULSATILE FLOW IN BAFFLED TUBES(P)
GR/F86069/01 NMR APPLICATIONS IN PROCESS ENGINEERING(C)
GR/E79712/01 TIME RESOLVED ORIENTATION MEASUREMENTS OF FOLLOWING LIQUID CRYSTALLINE POLYMER MELTS(P)
Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator