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Actuators --- Automobiles --- Electronic equipment
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Motor vehicles --- Electric vehicles --- Power electronics --- Electronic equipment --- Congresses
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Integrated optics --- Microelectromechanical systems --- Micromechanics --- Miniature electronic equipment --- Optical scanners --- Congresses. --- Congresses. --- Congresses. --- Congresses. --- Congresses.
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Automobiles --- Automobiles --- Automobiles --- Electronic equipment --- Motors --- Computer control systems --- Motors --- Control systems
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Electronic equipment --- Astronautics --- Aeronautics --- Data transmission systems --- Space vehicles --- Data processing --- Congresses. --- Communication systems --- Astronautics - Data processing - Congresses. --- Astronautics - Communication systems - Congresses. --- Aeronautics - Data processing - Congresses. --- Data transmission systems - Congresses. --- Space vehicles - Electronic equipment - Congresses.
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Electronic industries --- Electronic apparatus and appliances --- Automobiles --- Ball grid array technology --- Electronic packaging --- Semiconductors --- Congresses --- Design and construction --- Electronic equipment
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Motor vehicles --- Electric vehicles --- Power electronics --- Mechanical Engineering --- Engineering & Applied Sciences --- Automotive Engineering --- Electronic equipment --- Congresses --- Congresses --- Congresses
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Very fast advances in IC technologies have brought new challenges into the physical design of integrated systems. The emphasis on system performance, in lately developed applications, requires timing and power constraints to be considered at each stage of physical design. The size of ICs is decreasing continuously, and the density of power dissipated in the circuits is growing rapidly. The first challenge is the Information Technology where new materials, devices, telecommunication and multimedia facilities are developed. The second one is the Biomedical Science and Biotechnology. The utilisation of bloodless surgery is possible now because of wide micro-sensors and micro-actuators application. Nowadays, the modern micro systems can be implanted directly into the human body and the medicine can be applied right in the proper time and place in the patient body. The low-power devices are being developed particularly for medical and space applications. This has created for designers in all scientific domains new possibilities which must be handed down to the future generations of designers. In this spirit, we organised the Fourth International Workshop "MIXED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS" in order to provide an international forum for discussion and the exchange of information on education, teaching experiences, training and technology transfer in the area of microelectronics and microsystems.
Integrated circuits --- Miniature electronic equipment --- Microelectronics --- Very large scale integration --- Design and construction --- Congresses --- -Miniature electronic equipment --- -681.3*B72 --- Electronic equipment, Miniature --- Microminiaturization (Electronics) --- Miniaturization (Electronics) --- Subminiature electronic equipment --- Subminiaturization (Electronics) --- Electronic apparatus and appliances --- Microminiature electronic equipment --- Electronics --- Microtechnology --- Semiconductors --- Very large scale integration of circuits --- VLSI circuits --- Very large scale integration. --- Design aids: graphics; layout; placement and routing; simulation; verification (Integrated circuits) --- 681.3*B72 Design aids: graphics; layout; placement and routing; simulation; verification (Integrated circuits) --- 681.3*B72 --- Chips (Electronics) --- Circuits, Integrated --- Computer chips --- Microchips --- Electronic circuits --- Very large scale integration&delete& --- Design and construction&delete& --- Electronic circuits. --- Electrical engineering. --- Circuits and Systems. --- Electrical Engineering. --- Electric engineering --- Engineering --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Integrated circuits - Very large scale integration - Design and construction - Congresses --- Miniature electronic equipment - Design and construction - Congresses --- Microelectronics - Congresses
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Information systems --- Sea transport. Seaports --- Shipping --- Transports maritimes --- Ships --- Information technology --- Electronic equipment --- Automation --- Standards --- -Ships --- -Vessels (Ships) --- Boats and boating --- Shipbuilding --- IT (Information technology) --- Technology --- Telematics --- Information superhighway --- Knowledge management --- -Automation --- -Information technology --- -Standards --- -Information systems --- -Shipping --- Vessels (Ships) --- Ships - Electronic equipment - European Union countries --- Ships - European Union countries - Automation --- Information technology - Standards - European Union countries
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The book contains an up-to-date overview of the physics and technology of the man-made artificial atoms, i.e. the quantum dots. Different methods of creation of quantum dots, and the mechanism of carrier confinement in these structures are described. Discussed are the fundamental properties of these quasi-zero-dimensional many-electron systems, such as the single-particle energy quantization, generalized Kohn theorem, the effects due to electron-electron and spin-orbit interactions, magic states and the composite fermion formation in high magnetic fields, and the interaction of a dot with the visible and far-infrared light. The review of experiments carried out on quantum dots includes the capacitance, photoluminescence, and far-infrared spectroscopies. The original part contains the detailed analysis of the atomic-like properties of self-assembled quantum dots (shell structure, Hund rules, exciton condensation), the discussion of the effects due to the spin-orbit interaction (revealed in capacitance and far-infrared spectroscopies), and the description of the structure of luminescence spectrum of a quantum dot in terms of metastable excitonic states (also in a magnetic field).
Electronics and optics of solids --- Quantum dots. --- Quantum electronics. --- Semiconductors. --- Optical materials. --- Electronic materials. --- Nanotechnology. --- Materials science. --- Electronics. --- Microelectronics. --- Optical and Electronic Materials. --- Characterization and Evaluation of Materials. --- Electronics and Microelectronics, Instrumentation. --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Electrical engineering --- Physical sciences --- Material science --- Molecular technology --- Nanoscale technology --- High technology --- Electronic materials --- Optics --- Materials
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