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Titlebook: A Modern History of Materials; From Stability to Su M. Grant Norton Book 2023 The Editor(s) (if applicable) and The Author(s), under exclus

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楼主: 粗野的整个
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Entwicklungslinien des Aphorismus, The focus of this chapter is the electron microscope, an instrument critical to our understanding of a whole range of materials. The chapter also provides a brief history of scanning tunneling microscopy, a technique with the ability to provide atomic resolution images of the surfaces of materials.
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https://doi.org/10.1007/978-3-476-03912-5 This chapter looks at three very different methods of making materials that have become essential to our modern lives—pulling single crystals of silicon, drawing ultra-pure optical fibers, and blowing thin sheets of polyethylene—as well as a fourth method, 3D printing, which offers enormous potential for more sustainable manufacturing processes
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,Key to the Genera and Species (♀♀),t Prize of the decade was for one in a rapid series of groundbreaking ideas that reflected uncertainty and, to many, an uncomfortable lack of precision. In the ten years following the award of the 1920 Nobel Prize in Physics to Charles-Edouard Guillaume, a metallurgist from the small Swiss watchmaki
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https://doi.org/10.1007/978-3-476-03912-5e colors produced by “finely divided” gold particles to Don Eigler at IBM moving a single xenon atom back and forth across a platinum surface. Three nanomaterials—gold nanoparticles, carbon nanotubes, and graphene—are discussed in this chapter, from their discovery to their applications.
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Aphoristisches zwischen Physik und Dichtungectricity, a fair bet is it contains at least one lithium-ion battery. These creations of human ingenuity—requiring a detailed understanding of how materials interact at the atomic scale—power the ubiquitous smart devices that allow us to communicate with each other wherever we are in the world. Lit
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Georg Christoph Lichtenberg,Jürgen Teichmann . we use a total of 410 quintillion joules of energy. Every . we receive 430 quintillion joules of energy from the Sun. So, we get more energy from the Sun in 1 h than the world’s population uses in an entire year. While the first photovoltaic cells were dominated by silicon, recent research has id
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