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Titlebook: Materials Handbook; A Concise Desktop Re Fran?ois Cardarelli Book 20001st edition Springer-Verlag London 2000 Ceramics.Chemical Engineering

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發(fā)表于 2025-3-21 16:34:52 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Materials Handbook
副標(biāo)題A Concise Desktop Re
編輯Fran?ois Cardarelli
視頻videohttp://file.papertrans.cn/626/625776/625776.mp4
概述Essential reference tool for all those working in the numerous fields ranging from nuclear to civil engineering.Accurate physical and chemical properties of all classes of materials available at the r
圖書封面Titlebook: Materials Handbook; A Concise Desktop Re Fran?ois Cardarelli Book 20001st edition Springer-Verlag London 2000 Ceramics.Chemical Engineering
描述Despite the several comprehensive series available in Material Sciences and their related fields, it is a hard task to find grouped properties of metals and alloys, ceramics, polymers, minerals, woods, and building materials in a single volume source book. Actually, the scope of this practical handbook is to provide to scientists, engineers, professors, technicians, and students working in numerous scientific and technical fields ranging from nuclear to civil engineering, easy and rapid access to the accurate physico-chemical properties of all classes of materials. Classes used to describe the materials are: (i) metals and their alloys, (ii) semiconductors, (iii) superconductors, (iv) magnetic materials, ( v) miscellaneous electrical materials ( e. g. , dielectrics, thermocouple and industrial electrode materials), (vi) ceramics, refractories, and glasses, (vii) polymers and elastomers, (viii) minerals, ores, meteorites, and rocks, (ix) timbers and woods, and finally (x) building materials. Particular emphasis is placed on the properties of the most common industrial materials in each class. Physical and chemical properties usually listed for each material are (i) mechanical (e. g.
出版日期Book 20001st edition
關(guān)鍵詞Ceramics; Chemical Engineering; Civil Engineering; Composites; Data; Electronic Engineering; Ferrous Metal
版次1
doihttps://doi.org/10.1007/978-1-4471-3648-4
isbn_ebook978-1-4471-3648-4
copyrightSpringer-Verlag London 2000
The information of publication is updating

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al properties of all classes of materials available at the rDespite the several comprehensive series available in Material Sciences and their related fields, it is a hard task to find grouped properties of metals and alloys, ceramics, polymers, minerals, woods, and building materials in a single vol
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Book 20001st editionls and alloys, ceramics, polymers, minerals, woods, and building materials in a single volume source book. Actually, the scope of this practical handbook is to provide to scientists, engineers, professors, technicians, and students working in numerous scientific and technical fields ranging from nuc
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Ceramics and Glasses,c elements. Basic examples are silica, alumina, magnesia, or zirconia. Although oxides, and silicates, are the common well-known compounds for ceramic materials, ceramics also include for instance borides, carbides, silicides, nitrides, phosphides, and sulfides.
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Semiconductors, by an expansion of the . (LCAO). In this theory the atomic orbitals (AO) of two atoms can be combined together in order to form bonding and antibonding molecular orbitals (MO) symbolized by . and .* respectively. In the case of three neighboring atoms, it creates a string of atoms with bonding that
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Magnetic Materials,ection details the most common physical quantities used to describe magnetic properties of materials, while the following sections describe the basic magnetic properties of the five classes of magnetic materials.
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