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Multiflash x-ray with image detanglement for single image isolation
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Year: 2017 Publisher: Aberdeen Proving Ground, MD : US Army Research Laboratory,

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Keywords

X-rays. --- Radiography. --- Ballistics.


Book
Multiflash x-ray with image detanglement for single image isolation
Authors: ---
Year: 2017 Publisher: Aberdeen Proving Ground, MD : US Army Research Laboratory,

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Abstract

Keywords

X-rays. --- Radiography. --- Ballistics.


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An introduction to X-ray physics, optics, and applications
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ISBN: 0691139652 9780691139654 Year: 2017 Publisher: Princeton (N.J.): Princeton university press,

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Fragile X syndrome
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ISBN: 0128045078 0128044616 9780128045077 9780128044612 Year: 2017 Publisher: London Academic Press

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Ca s'écrit ! Et ça se lit aussi : en 1re primaire : les savoir écrire et savoir lire en 24 activités
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ISBN: 9782874387203 Year: 2017 Publisher: Namur Erasme

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En PISTES ! Itinéraires d'apprentissage du français, 5e primaire
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ISBN: 9782874387166 Year: 2017 Publisher: Namur Namur Namur Namur Éditions érasme Éditions érasme Éditions érasme Éditions érasme

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Multi
Fragile x syndrome : from genetics to targeted treatment
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ISBN: 9780128044612 9780128045077 0128045078 0128044616 Year: 2017 Publisher: London, [England] : Academic Press,

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Gott, Kirche Welt und des Teufels Anteil : Ingo Langner im Gespräch mit Pater Franz Schmidberger von der Priesterbruderschaft St. Pius X.
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ISBN: 9783864171017 3864171016 Year: 2017 Publisher: Aachen Patrimonium-Verslag

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Chapter X‐Ray Spectroscopy on Biological Systems
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Year: 2017 Publisher: London, England : InTechOpen,

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Oxide-based electronics have been well established as an alternative to silicon technology; however, typical processing requires complex, high-vacuum equipment, which is a major drawback, particularly when targeting low-cost applications. The possibility to deposit the materials by low-cost techniques such as inkjet printing has drawn tremendous interest in solution processible materials for electronic applications; however, high processing temperatures still required. To overcome this issue, solution combustion synthesis has been recently pursued. Taking advantage of the exothermic nature of the reaction as a source of energy for localized heating, the precursor solutions can be converted into oxides at lower process temperatures. Theoretically, this can be applied to any metal ions to produce the desired oxide, opening unlimited possibilities to materials' composition and combinations. Solution combustion synthesis has been applied for the production of semiconductor thin films based on ZnO, In2O3, SnO2 and combinations of these oxides, and also for high κ dielectrics (Al2O3). All of which are required for numerous electronic devices and applications such as fully oxide-based thin-film transistors (TFTs). The properties of produced thin films are highly dependent on the precursor solution characteristics; hence, the influence of several processing parameters; organic fuel, solvent and annealing temperature was studied. Although precursor solution degradation/oxide formation mechanisms are not yet fully understood, particularly for thin films, we demonstrate that high-performance devices are obtained with combustion solution-based metal oxide thin films. The results clearly show that solution combustion synthesis is becoming one of the most promising methods for low-temperature flexible electronics.


Book
Chapter X‐Ray Spectroscopy on Biological Systems
Author:
Year: 2017 Publisher: London, England : InTechOpen,

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Abstract

Oxide-based electronics have been well established as an alternative to silicon technology; however, typical processing requires complex, high-vacuum equipment, which is a major drawback, particularly when targeting low-cost applications. The possibility to deposit the materials by low-cost techniques such as inkjet printing has drawn tremendous interest in solution processible materials for electronic applications; however, high processing temperatures still required. To overcome this issue, solution combustion synthesis has been recently pursued. Taking advantage of the exothermic nature of the reaction as a source of energy for localized heating, the precursor solutions can be converted into oxides at lower process temperatures. Theoretically, this can be applied to any metal ions to produce the desired oxide, opening unlimited possibilities to materials' composition and combinations. Solution combustion synthesis has been applied for the production of semiconductor thin films based on ZnO, In2O3, SnO2 and combinations of these oxides, and also for high κ dielectrics (Al2O3). All of which are required for numerous electronic devices and applications such as fully oxide-based thin-film transistors (TFTs). The properties of produced thin films are highly dependent on the precursor solution characteristics; hence, the influence of several processing parameters; organic fuel, solvent and annealing temperature was studied. Although precursor solution degradation/oxide formation mechanisms are not yet fully understood, particularly for thin films, we demonstrate that high-performance devices are obtained with combustion solution-based metal oxide thin films. The results clearly show that solution combustion synthesis is becoming one of the most promising methods for low-temperature flexible electronics.

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