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Iconography --- Art --- Sculpture --- Painting --- painting [image-making] --- sculpting --- zinc --- stilte (kunst) --- Devereux, Richard --- Great Britain
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Eating disorders in children. --- Eating disorders in adolescence. --- Cognitive therapy for children. --- Cognitive therapy for teenagers. --- Comportement alimentaire, Troubles du, chez l'enfant --- Comportement alimentaire, Troubles du, chez l'adolescent --- Thérapie cognitive pour enfants --- Thérapie cognitive pour adolescents --- Troubles du comportement alimentaire chez l'enfant --- Troubles du comportement alimentaire chez l'adolescent --- Thérapie cognitive pour enfants --- Thérapie cognitive pour adolescents --- Klinische psychologie --- Specifieke problemen. --- Cognitive therapy for children --- Cognitive therapy for teenagers --- Eating disorders in adolescence --- Eating disorders in children --- Adolescent psychopathology --- Adolescent psychotherapy --- Child psychotherapy --- Child psychopathology
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Spectrometric and optical chemical analysis --- Electronics --- Electrical engineering --- Engineering sciences. Technology --- Programming --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- analyse (wiskunde) --- groene chemie --- informatica --- elektronica --- ingenieurswetenschappen --- CAD (computer aided design) --- elektrische circuits --- fysicochemie --- spectrometrie
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Semiconductor Modeling: For Simulating Signal, Power, and Electromagnetic Integrity gives designers and engineers a broad view of using semiconductor models to design high-speed circuit boards. Most issues in the field of designing high-frequency circuits, from the beginning of modeling and simulation using EDA tools to future trends, are discussed and integrated. The main technical focus of Semiconductor Modeling: For Simulating Signal, Power, and Electromagnetic Integrity is the use of simulation to help solve practical engineering problems. The book draws on over 90 years of diverse technical experience and brings together theory, tools, components, software, and experience to help engineers create successful electronic products. This book will help engineers understand how to approach problem solving while designing high-speed circuits. In particular, it helps engineers in the following areas: · Encountering non-existent, incomplete, and erroneous semiconductor circuit models. · Applying EDA tools to achieve practical designs despite model limitations. · Grasping the basic high-speed digital, RF, and EMC design concepts that guide design intent. · Applying EDA tools to cutting-edge digital technology. · Working with suppliers, CAD team members, and others. · Understanding the processes and procedures that enable and enhance the design process. The book presents the material in a manner that is helpful to circuit and product design engineers who have little or no specialized knowledge of high-speed digital design or semiconductors. .
Semiconductors --- Electric conductivity --- Mathematical models. --- Conductivity, Electric --- Free electron theory of metals --- Transport theory --- Systems engineering. --- Computer aided design. --- Microwaves. --- Electronics. --- Engineering mathematics. --- Computer engineering. --- Circuits and Systems. --- Computer-Aided Engineering (CAD, CAE) and Design. --- Microwaves, RF and Optical Engineering. --- Electronics and Microelectronics, Instrumentation. --- Mathematical and Computational Engineering. --- Electrical Engineering. --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Engineering analysis --- Mathematical analysis --- Electrical engineering --- Physical sciences --- Hertzian waves --- Electric waves --- Electromagnetic waves --- Geomagnetic micropulsations --- Radio waves --- Shortwave radio --- CAD (Computer-aided design) --- Computer-assisted design --- Computer-aided engineering --- Design --- Computers --- Design and construction --- Mathematics
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Semiconductor Modeling: For Simulating Signal, Power, and Electromagnetic Integrity gives designers and engineers a broad view of using semiconductor models to design high-speed circuit boards. Most issues in the field of designing high-frequency circuits, from the beginning of modeling and simulation using EDA tools to future trends, are discussed and integrated. The main technical focus of Semiconductor Modeling: For Simulating Signal, Power, and Electromagnetic Integrity is the use of simulation to help solve practical engineering problems. The book draws on over 90 years of diverse technical experience and brings together theory, tools, components, software, and experience to help engineers create successful electronic products. This book will help engineers understand how to approach problem solving while designing high-speed circuits. In particular, it helps engineers in the following areas: · Encountering non-existent, incomplete, and erroneous semiconductor circuit models. · Applying EDA tools to achieve practical designs despite model limitations. · Grasping the basic high-speed digital, RF, and EMC design concepts that guide design intent. · Applying EDA tools to cutting-edge digital technology. · Working with suppliers, CAD team members, and others. · Understanding the processes and procedures that enable and enhance the design process. The book presents the material in a manner that is helpful to circuit and product design engineers who have little or no specialized knowledge of high-speed digital design or semiconductors.
Spectrometric and optical chemical analysis --- Electronics --- Electrical engineering --- Engineering sciences. Technology --- Programming --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- analyse (wiskunde) --- groene chemie --- informatica --- elektronica --- ingenieurswetenschappen --- CAD (computer aided design) --- elektrische circuits --- fysicochemie --- spectrometrie
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Museology --- Iconography --- Art --- Sculpture --- outdoor sculpture --- museology --- Nature --- sculpting --- landscapes [representations] --- Prantl, Karl --- LeWitt, Sol --- Cragg, Tony --- Pomodoro, Gio --- Shapiro, Joel --- Caro, Anthony --- Ernst, Max --- Finlay, Ian Hamilton --- Hepworth, Barbara --- Frink, Elisabeth --- Mach, David --- Plensa, Jaume --- Randall-Page, Peter --- Wentworth, Richard --- Ballengée, Brandon --- Benton, Fletcher --- Bourdelle, Antoine --- Finlay, Alec --- Fullard, George --- Garaicoa, Carlos --- Hörbelt, Berthold --- Hunter, Kenny --- Jeanne-Claude --- Kovats, Tania --- Lyons, Michael --- Marini, Marino --- Paolozzi, Eduardo --- Newling, John --- Pye, William --- Rose, Colin --- Ryder, Sophie --- Wotruba, Fritz --- Nash, David --- Sørensen, Jørgen Haugen --- Long, Richard --- Rydingsvard, von, Ursula --- Woods, Richard --- Wright, Austin --- Yasuda, Kan --- Serra, Richard --- Rodin, Auguste --- Goldsworthy, Andy --- Moore, Henry --- Chillida, Eduardo --- Flanagan, Barry --- Meadows, Bernard --- Turrell, James --- Vries, de, Auke --- Kounellis, Jannis --- Armitage, Kenneth --- King, Phillip --- Borofsky, Jonathan --- Gormley, Antony --- Lim, Kim --- Rückriem, Ulrich --- Turnbull, William --- Winter, Wolfgang --- Abakanowicz, Magdalena --- Tucker, William --- Lipchitz, Jacques --- Dodeigne, Eugène --- Mitoraj, Igor --- Chadwick, Lynn --- Rickey, George --- Zadkine, Ossip --- Yorkshire Sculpture Park [West Bretton] --- anno 1900-1999 --- anno 2000-2099 --- Great Britain
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