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        Chapter Spin-Wave Dynamics in the Presence of Magnetic Vortices 

        Mamica, Sławomir (2017)
        This chapter describes spin-wave excitations in nanosized dots and rings in the presence of the vortex state. The special attention is paid to the manifestation of the competition between exchange and dipolar interactions ...
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        Chapter Opportunities of Scanning Probe Microscopy for Electrical, Mechanical and Electromechanical Research of Semiconductor Nanowires 

        Geydt, Pavel; Dunaevskiy, M. S.; Lähderanta, Erkki (2017)
        In this chapter, three types of phenomena (electrical, mechanical, and electromechanical) that can be investigated in individual III–V semiconductor nanowires with scanning probe microscope are presented. Transport ...
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        Chapter Polystyrene as Hazardous Household Waste 

        Shaw, Ian C.; Farrelly, Trisia (2017)
        During the Humanitarian‐demining actions, teleoperation of sensors or multi‐sensor heads can enhance-detection process by allowing more precise scanning, which is useful for the optimization of the signal processing ...
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        Chapter Plasmonics Devoted to Photocatalytic Applications in Liquid, Gas, and Biological Environments 

        Hueso, Jose L.; Arca-Ramos, Adriana; Bueno-Alejo, Carlos J. (2017)
        Plasmonic nanomaterials have emerged in the last years as a very interesting option for many photocatalytic processes. Their localized surface plasmon resonance (LSPR) brings in some unique properties that overcome some ...
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        Chapter Smartphone: The Ultimate IoT and IoE Device 

        Ajana El Khaddar, Mehdia; Boulmalf, Mohammed (2017)
        Internet of Things (IoT) and Internet of Everything (IoE) are emerging communication concepts that will interconnect a variety of devices (including smartphones, home appliances, sensors, and other network devices), people, ...
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        License

        • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

        Credits

        • logo EU
        • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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