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Marc J. Madou

    Fundamentals of Microfabrication and Nanotechnology - 1: Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology - Third Edition
    Fundamentals of Microfabrication and Nanotechnology, Third Edition, Volume Two
    • Fundamentals of Microfabrication and Nanotechnology, Third Edition, Volume Two

      Manufacturing Techniques for Microfabrication and Nanotechnology

      • 670 pages
      • 24 hours of reading

      Designed for science and engineering students, this text focuses on emerging trends in processes for fabricating MEMS and NEMS devices. The book reviews different forms of lithography, subtractive material removal processes, and additive technologies. Both top-down and bottom-up fabrication processes are exhaustively covered and the merits of the different approaches are compared. Students can use this color volume as a guide to help establish the appropriate fabrication technique for any type of micro- or nano-machine.

      Fundamentals of Microfabrication and Nanotechnology, Third Edition, Volume Two
    • Providing a clear theoretical understanding of MEMS and NEMS, Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology focuses on nanotechnology and the science behind it, including solid-state physics. It provides a clear understanding of the electronic, mechanical, and optical properties of solids relied on in integrated circuits (ICs), MEMS, and NEMS. After exploring the rise of Si, MEMS, and NEMS in a historical context, the text discusses crystallography, quantum mechanics, the band theory of solids, and the silicon single crystal. It concludes with coverage of photonics, the quantum hall effect, and superconductivity. Fully illustrated in color, the text offers end-of-chapter problems, worked examples, extensive references, and a comprehensive glossary of terms. Topics include: The first volume in Fundamentals of Microfabrication and Nanotechnology, Third Edition, Three-Volume Set, the book presents the electronic, mechanical, and optical properties of solids that are used in integrated circuits, MEMS, and NEMS and covers quantum mechanics, electrochemistry, fluidics, and photonics. It lays the foundation for a qualitative and quantitative theoretical understanding of MEMS and NEMS.

      Fundamentals of Microfabrication and Nanotechnology - 1: Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology - Third Edition