Opening book details…
Can I read Chemistry of Powder Production (Particle Technology Series (6)) on EtoBox?
Chemistry of Powder Production (Particle Technology Series (6)) by Yasuo Arai (auth.) is a nonfiction available to read on EtoBox.
What is Chemistry of Powder Production (Particle Technology Series (6)) about?
__Chemistry of Powder Production__ focuses on the solid-state chemistry of powder materials and relates this to the structure, properties and preparation, and characterization techniques for these important industrial products. Additionally, the properties of the particles are discussed in relation to their surface structure and characteristics. This book describes the fundamentals of statistical methods for measuring the characteristics of particles. New advanced materials being developed in powder technology manufacturing techniques are also emphasised, including powdered materials for advanced ceramics as well as magnetic and pigment materials.
Who reads Chemistry of Powder Production (Particle Technology Series (6))?
It is typically read by self-directed learners exploring a subject in depth.
Common subject areas: history, science, philosophy, social sciences.
- Author
- Yasuo Arai (auth.)
- Publisher
- Springer Netherlands
- Published
- 1996
- Language
- EN
- ISBN
- 9789401071673
- Category
- nonfiction
Other editions & translations
More by Yasuo Arai (auth.)
Browse all works by Yasuo Arai (auth.)
Similar books
- Mixing of Solids (Particle Technology Series (12)) — Ralf Weinekötter, Hermann Gericke (auth.) (2000)
- Powder Metallurgy Technology — G S Upadhyaya; ProQuest (Firm) (1998)
- Fundamentals of Gas-particle Flow : Handbook of Powder Technology 2 — G. Rudinger (Auth.) (1980)
- Powder Surface Area and Porosity (Particle Technology Series, 2) — S. Lowell, Joan E. Shields (auth.) (1991)
- Particle Breakage, Volume 12 (Handbook of Powder Technology) (Handbook of Powder Technology) — Agba D. Salman, Mojtaba Ghadiri, Michael Hounslow (2007)
- Tobacco : Production, Chemistry, and Technology — edited by D. Layten Davis and Mark T. Nielsen (1999)
