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Titlebook: Mathematik für Ingenieure und Naturwissenschaftler Band 2; Ein Lehr- und Arbeit Lothar Papula Textbook 200711th edition Vieweg+Teubner Verl

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dustrial demonstrator, and to allow the study of efficient transmutation of high-level nuclear waste. Because MYRRHA is based on the heavy liquid metal technology, namely lead–bismuth eutectic (LBE), it will be able to significantly contribute to the development of Lead Fast Reactor (LFR) technology
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nificant barrier to the production of nuclear batteries arises from limitations in the isotope supply and cost of production. These limitations can be surprising, as a common misconception is that radioisotope supplies are at least abundant, even if they cannot be cheaply produced. For nuclear batte
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d maintenance. Two techniques have proved particularly valuable to our study of cellular dynamics and molecular mobility, namely, time-lapse imaging and fluorescence recovery after photobleaching (FRAP). Time-lapse microscopy allows for qualitative and quantitative analysis of a wide range of events
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molecules of interest in the context of specific cellular structures at high resolution, it is useful for the study of nuclear structures including nuclear bodies. Here we describe Live CLEM that can be applied to the study of nuclear structures in mammalian cells.
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d maintenance. Two techniques have proved particularly valuable to our study of cellular dynamics and molecular mobility, namely, time-lapse imaging and fluorescence recovery after photobleaching (FRAP). Time-lapse microscopy allows for qualitative and quantitative analysis of a wide range of events
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