Sprache: Spanisch
Verlag: GRUPO EDITORIAL LETRAS NEGRAS S.A.S, 2023
ISBN 10: 6287680164 ISBN 13: 9786287680166
Anbieter: KALAMO BOOKS, Burriana, CS, Spanien
Tapa blanda. Zustand: Nuevo.
Verlag: Albert Bennefeld / Echo-Musikverlag / Edition Gabriel / Edition Meisel & Co. u. a., Berlin, 1940
Anbieter: Musikantiquariat Staub, Leipzig, Deutschland
Verbandsmitglied: BOEV
Noten
Zustand: Gut. Jahr: ca. 1940. Einband: Heft. Beschreibung: Film- und Tanzmusik. Leicht bearbeitet von Ludwig Kletsch. VN/Pl. no. E.M.659. Titelill. v. W. Keil. Alter Stempel einer Musikalienhandlung auf dem Spiegel. Gemeinsame Ausgabe der Verlage Albert Bennefeld, Echo Musikverlag, Edition Gabriel Edition Majestic E. Paesike u. Edition Meisel & Co. Copyrights zwischen 1935 und 1940. Einige Bögen unaufgeschnitten, drei Blätter lose. Sprache: de. 39 S.
Sprache: Englisch
Verlag: Transaction Publishers, New Brunswick, 2001
ISBN 10: 0765800306 ISBN 13: 9780765800305
Anbieter: PsychoBabel & Skoob Books, Didcot, Vereinigtes Königreich
EUR 47,47
Anzahl: 1 verfügbar
In den WarenkorbHardcover. Zustand: Very Good. Hardcover with unclipped dust jacket. Slightest of wear to jacket edges and faint markings to page block. No other notable flaws. AD. Used.
Anbieter: Revaluation Books, Exeter, Vereinigtes Königreich
EUR 56,63
Anzahl: 1 verfügbar
In den WarenkorbPaperback. Zustand: Brand New. 144 pages. 8.27x5.83x0.33 inches. In Stock.
Erscheinungsdatum: 1980
Anbieter: Verlag für Filmschriften, Hebertshausen, Deutschland
Ausgabe 2/80 der Reihe "Star Club" Schön bebildertes Fanmagazin ("über 100 Fotos aus dem Leben des King"), größtenteils in Farbe. Sehr gutes Exemplar GH 28x22. 153g.
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Considering the high relevance of electronics in the industrial, technological and business communities,monocrystalline silicon is one of the most important technical materials today and in the near future.To grow the monocrystalline silicon industrially with the required quality, the Czochralski and the crucible-free Floating Zone methods are generally used.The thesis is focused on the model-based automation of the crystal growth of silicon using Floating Zone technique. Automatic growth control is a key issue in production of silicon with respect to yield, quality, and reproducibility.Also, reliability and comparability are enhanced by growth control.In an industrial setting, it is essential to produce crystals with equal properties by keeping identical processing conditions.In today's industrial production, standard PI or PID controllers are applied to regulate the Floating Zone process. Due to the changing dynamics during the process, the controller parameters are set up separately for every phase of the process.In contrast, a model-based controller gives a widely flexible handling of different machine components, different inductor types and different target diameters.Therefore, a model-based automation concept was developed to regulate the Floating Zone process including the following phases: forming the feed tip, creating the thin neck, making the cone and growing the cylinder. A measurement system was created to obtain the geometrical quantities based on visual image processing.Digital cameras were applied to capture the process.The acquired images were analyzed by gradient-based methods.A model-based state estimation technique, the Extended Kalman filter, and a model predictive controller were implemented to regulate the processwithout using additional controller components such as a PID controller.To use those methods, a nonlinear low-order model was developed including geometrical and thermodynamical aspects of the process.The mathematical model is based on a system of coupled differential equations and allows the prediction of radii and angles of feed and crystal, upper and lower zone heights, the melt volume, the melt neck, and the rates of melting and growing. A prediction horizon of several minutes is achieved with high accuracy and a calculation time less than one second.
Anbieter: preigu, Osnabrück, Deutschland
Taschenbuch. Zustand: Neu. Analysis and Automation of the crucible-free Floating Zone (FZ) Growth of Silicon Crystals | Nico Werner | Taschenbuch | 144 S. | Englisch | 2014 | epubli | EAN 9783844294675 | Verantwortliche Person für die EU: Neopubli GmbH, Sebastian Stude, Köpenicker Str. 154a, 10997 Berlin, produktsicherheit[at]epubli[dot]com | Anbieter: preigu.
Zustand: Sehr gut. 6. Auflage. 192 S. Als Mängelexemplar gekennzeichnet, Lagerspuren vorhanden Sprache: Deutsch Gewicht in Gramm: 556.
Zustand: New. pp. lxii + 328.
EUR 279,80
Anzahl: 2 verfügbar
In den WarenkorbHardcover. Zustand: Brand New. 328 pages. 9.00x6.25x1.50 inches. In Stock.
Verlag: Zürich: Schweizerisches Institut für Kunstwissenschaft, 1998, 1998
Anbieter: °ART...on paper - 20th Century Art Books, Lugano, Schweiz
Verbandsmitglied: ILAB
Erstausgabe
Hardcover. Zustand: Fine. Zustand des Schutzumschlags: Fine. 1st Edition. 4° 484pp B/w reproductions. The art of collecting - Swiss art collections since 1848. First edition, text in German, French and Italian. Original binding and dust-jacket. In Fine condition.
Anbieter: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Deutschland
Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Considering the high relevance of electronics in the industrial, technological and business communities,monocrystalline silicon is one of the most important technical materials today and in the near future.To grow the monocrystalline silicon industrially with the required quality, the Czochralski and the crucible-free Floating Zone methods are generally used.The thesis is focused on the model-based automation of the crystal growth of silicon using Floating Zone technique. Automatic growth control is a key issue in production of silicon with respect to yield, quality, and reproducibility.Also, reliability and comparability are enhanced by growth control.In an industrial setting, it is essential to produce crystals with equal properties by keeping identical processing conditions.In today's industrial production, standard PI or PID controllers are applied to regulate the Floating Zone process. Due to the changing dynamics during the process, the controller parameters are set up separately for every phase of the process.In contrast, a model-based controller gives a widely flexible handling of different machine components, different inductor types and different target diameters.Therefore, a model-based automation concept was developed to regulate the Floating Zone process including the following phases: forming the feed tip, creating the thin neck, making the cone and growing the cylinder. A measurement system was created to obtain the geometrical quantities based on visual image processing.Digital cameras were applied to capture the process.The acquired images were analyzed by gradient-based methods.A model-based state estimation technique, the Extended Kalman filter, and a model predictive controller were implemented to regulate the processwithout using additional controller components such as a PID controller.To use those methods, a nonlinear low-order model was developed including geometrical and thermodynamical aspects of the process.The mathematical model is based on a system of coupled differential equations and allows the prediction of radii and angles of feed and crystal, upper and lower zone heights, the melt volume, the melt neck, and the rates of melting and growing. A prediction horizon of several minutes is achieved with high accuracy and a calculation time less than one second. 144 pp. Englisch.
Anbieter: moluna, Greven, Deutschland
EUR 29,95
Anzahl: Mehr als 20 verfügbar
In den WarenkorbZustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. This thesis is focused on the automation of the crystal growth using Floating Zone.Considering the high relevance of electronics in the industrial, technological and business communities,monocrystalline silicon is one of the most important technical mat.