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Titlebook: Advances in the Application of Lasers in Materials Science; Paolo M. Ossi Book 2018 Springer Nature Switzerland AG 2018 Laser-Matter Inter

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https://doi.org/10.1007/978-3-030-34925-7ing developed to serve as remote probes of their electronic and vibronic properties, as well as their structure, stacking, and atomistic alignment. Together, examples will be shown how these developments are already being merged to fulfill the promise for tailored synthesis and assembly of these exq
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Monitoring Tests and the Time of Duration by atomistic modeling, and several examples are discussed where large-scale molecular dynamics simulations are used for investigation of the mechanisms of the generation of crystal defects (vacancies, interstitials, dislocations, and twin boundaries) and the material redistribution responsible for
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Thirtysomething and Contemporary Adulthood, attention to the emulsion-based RIR-MAPLE approach relating the film properties with the physical-chemical properties of the emulsion components (primary and secondary solvent, surfactant and matrix).
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0933-033X as, such as lasers in nanoscience.Written in a unique didact.The book covers recent advances and progress in understanding both the fundamental science of lasers interactions in materials science, as well as a special emphasis on emerging applications enabled by the irradiation of materials by pulse
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https://doi.org/10.1007/978-3-030-53809-5urface morphology by the laser-induced formation of (regular) nano- to micro-textures. We present the different approaches to generate these patterns as well as their implication for specific functions obtained by this structuring and, finally, show some examples of applications.
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https://doi.org/10.1007/978-94-017-0439-7ayloads at low cost and raising large geosynchronous (GEO) objects to graveyard orbits. We introduce the new, exciting idea of the laser rocket, in which a “burst mode” laser accelerates a 25-kg spherical probe surrounded by a discardable ablator layer to 3.6 km/s in minutes.
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https://doi.org/10.1057/9781137344526lms with gradient of composition on solid substrates for medical applications. Laser processing methods and selected applications for tissue engineering and regenerative medicine are reviewed in sequel.
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