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    In:  Grenzen und Grenzräume in der deutschen und polnischen Geschichte (2000), Seite 127-141 | year:2000 | pages:127-141
    ISBN: 3883043044
    Language: German
    Titel der Quelle: Grenzen und Grenzräume in der deutschen und polnischen Geschichte
    Publ. der Quelle: Hannover : Hahn, 2000
    Angaben zur Quelle: (2000), Seite 127-141
    Angaben zur Quelle: year:2000
    Angaben zur Quelle: pages:127-141
    DDC: 306.09438
    Note: Untersucht die Begriffe "Sprache" und "Grenze" bezüglich der deutsch-polnischen Grenze
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  • 2
    ISBN: 9783941362192
    Language: German , Polish , French
    Pages: 96 S. , überw. Ill. , 30 cm
    DDC: 303.482
    Keywords: Kulturbeziehungen ; Weimarer Dreieck ; Internationale Politik ; Multilateralismus ; Wahrnehmung ; Karikatur ; Fremdbild ; Ausland ; Frankreichbild ; Deutschlandbild ; Frankreich ; Deutschland ; Polen ; Karikatur ; Weimarer Dreieck
    Note: Beitr. dt., poln. und franz
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  • 3
    ISBN: 9783036535531 , 9783036535548
    Language: Undetermined
    Pages: 1 Online-Ressource (200 p.)
    Parallel Title: Erscheint auch als Magnetoelectric sensor systems and applications
    Keywords: Research & information: general ; Physics ; Electricity, electromagnetism & magnetism
    Abstract: In the field of magnetic sensing, a wide variety of different magnetometer and gradiometer sensor types, as well as the corresponding read-out concepts, are available. Well-established sensor concepts such as Hall sensors and magnetoresistive sensors based on giant magnetoresistances (and many more) have been researched for decades. The development of these types of sensors has reached maturity in many aspects (e.g., performance metrics, reliability, and physical understanding), and these types of sensors are established in a large variety of industrial applications. Magnetic sensors based on the magnetoelectric effect are a relatively new type of magnetic sensor. The potential of magnetoelectric sensors has not yet been fully investigated. Especially in biomedical applications, magnetoelectric sensors show several advantages compared to other concepts for their ability, for example, to operate in magnetically unshielded environments and the absence of required cooling or heating systems. In recent years, research has focused on understanding the different aspects influencing the performance of magnetoelectric sensors. At Kiel University, Germany, the Collaborative Research Center 1261 "Magnetoelectric Sensors: From Composite Materials to Biomagnetic Diagnostics", funded by the German Research Foundation, has dedicated its work to establishing a fundamental understanding of magnetoelectric sensors and their performance parameters, pushing the performance of magnetoelectric sensors to the limits and establishing full magnetoelectric sensor systems in biological and clinical practice
    Note: English
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