Study modes: Full time
Course description: Semester 1: Compulsory modules: materials structure properties and selection; processing of materials; materials laboratories; finite element method; options: mechanical properties of materials; electronic and optical device materials; rapid prototyping; advanced manufacturing processes; laser materials processing; semester 2: compulsory modules: manufactured article and reverse engineering; thermodynamics and kinetics.(read more)
Study modes: Full time
Course description: Semester 1: Compulsory modules: materials structure properties and selection; processing of materials; materials laboratories; finite element method; options: mechanical properties of materials; electronic and optical device materials; rapid prototyping; advanced manufacturing processes; laser materials processing; semester 2: compulsory modules: manufactured article and reverse engineering; thermodynamics and kinetics.(read more)
Study modes: Full time
Course description: Semester 1: Compulsory modules: materials structure properties and selection; processing of materials; materials laboratories; finite element method; options: mechanical properties of materials; electronic and optical device materials; rapid prototyping; advanced manufacturing processes; laser materials processing; semester 2: compulsory modules: manufactured article and reverse engineering; thermodynamics and kinetics.(read more)
Study modes: Full time
Course description: Compulsory modules: Laser materials processing; instrumentation and actuators; systems modelling; computer-aided design and communication skills; finite element method; impact and blast performance of structure and systems; applied control engineering; applied CNC machining; systems simulation; optional modules: management of product development; manufacturing strategy; management of design; total quality management.(read more)
Study modes: Full time
Course description: Compulsory modules: Laser materials processing; instrumentation and actuators; systems modelling; computer-aided design and communication skills; finite element method; impact and blast performance of structure and systems; applied control engineering; applied CNC machining; systems simulation; optional modules: management of product development; manufacturing strategy; management of design; total quality management.(read more)
Study modes: Full time
Course description: Compulsory modules: Laser materials processing; instrumentation and actuators; systems modelling; computer-aided design and communication skills; finite element method; impact and blast performance of structure and systems; applied control engineering; applied CNC machining; systems simulation; optional modules: management of product development; manufacturing strategy; management of design; total quality management.(read more)
Study modes: Full time | Part time evening
Course description: Thesis subjects include: Design of lighting installations for obstructed interiors; computer modelling of auditoria acoustics; architecture and urban design in 19th-century Liverpool; computer-aided architectural design; conservation management of world heritage cities; impact noise in buildings at low frequencies; construction methods and materials in the traditional architecture of Cyprus; innovation and invention in architecture.(read more)
Study modes: Full time | Part time evening
Course description: Thesis subjects include: Design of lighting installations for obstructed interiors; computer modelling of auditoria acoustics; architecture and urban design in 19th-century Liverpool; computer-aided architectural design; conservation management of world heritage cities; impact noise in buildings at low frequencies; construction methods and materials in the traditional architecture of Cyprus; innovation and invention in architecture.(read more)
Study modes: Full time
Course description: Facilities for research work in most branches of civil engineering, plus large laboratories for work in structures, hydraulics, coastal and offshore engineering.(read more)
Study modes: Full time
Course description: Facilities for research work in most branches of civil engineering, plus large laboratories for work in structures, hydraulics, coastal and offshore engineering.(read more)
Study modes: Full time | Part time evening
Course description: Supervision available, staff expertise in: biomaterials research, haemodynamics, vascular engineering, biocompatibility, blood compatibility, dental materials; current research areas include: biocompatibility, haemocompatibility, haemodynamics and dental materials.(read more)
Study modes: Part time evening | Part time day
Course description: Supervision available, staff expertise in: biomaterials research, haemodynamics, vascular engineering, biocompatibility, blood compatibility, dental materials; current research areas include: biocompatibility, haemocompatibility, haemodynamics and dental materials.(read more)
Study modes: Full time | Part time evening
Course description: Research interests in: communications; digital signal processing; advanced devices for VLSI and power; plasma processing; displays; optoelectronic fibre based sensors, switchgear; robotics and vision systems applications and the development of free electron lasers; intelligence engineering and automation.(read more)
Study modes: Full time | Part time evening
Course description: Research interests in: communications; digital signal processing; advanced devices for VLSI and power; plasma processing; displays; optoelectronic fibre based sensors, switchgear; robotics and vision systems applications and the development of free electron lasers; intelligence engineering and automation.(read more)
Study modes: Full time | Part time evening
Course description: Course covers: Introduction to laser materials processing; optic in laser engineering; medical applications of lasers; economic of laser processes; research methods; laser cutting and marking; laser welding and drilling; laser surface processing; laser systems and control; management skills.(read more)
Study modes: Full time
Course description: Course covers: Introduction to laser materials processing; optic in laser engineering; medical applications of lasers; economic of laser processes; research methods; laser cutting and marking; laser welding and drilling; laser surface processing; laser systems and control; management skills.(read more)
Study modes: Full time
Course description: Course covers: Introduction to laser materials processing; optic in laser engineering; medical applications of lasers; economic of laser processes; research methods; laser cutting and marking; laser welding and drilling; laser surface processing; laser systems and control; management skills.(read more)
Study modes: Full time
Course description: Contact provider for further course (read more)
Study modes: Full time | Part time evening
Course description: 24 weeks of taught components followed by an individual project; core study of systems engineering, machine learning and information processing.(read more)
Study modes: Full time
Course description: 24 weeks of taught components followed by an individual project; core study of systems engineering, machine learning and information processing.(read more)