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1. |
Record Nr. |
UNINA9910780938703321 |
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Autore |
Beckett S. T |
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Titolo |
The science of chocolate [[electronic resource] /] / Stephen T. Beckett |
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Pubbl/distr/stampa |
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ISBN |
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Descrizione fisica |
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1 online resource (191 p.) |
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Collana |
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Disciplina |
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Soggetti |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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OFC; BK9780854046003-FP001; BK9780854046003-FP005; BK9780854046003-FP007; BK9780854046003-FP012; BK9780854046003-00001; BK9780854046003-00008; BK9780854046003-00031; BK9780854046003-00049; BK9780854046003-00066; BK9780854046003-00085; BK9780854046003-00104; BK9780854046003-00127; BK9780854046003-00143; BK9780854046003-00152; BK9780854046003-00170 |
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Sommario/riassunto |
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Chocolate is available to today's consumers in a variety of colours, shapes and textures. But how many of us, as we savour our favourite brand, consider the science that has gone into its manufacture? This book describes the complete chocolate making process, from the growing of the beans to the sale in the shops.The Science of Chocolate first describes the history of this intriguing substance. Subsequent chapters cover the ingredients and processing techniques, enabling the reader to discover not only how confectionery is made but also how basic science plays a vital role with coverage of sci |
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2. |
Record Nr. |
UNINA9910826047703321 |
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Titolo |
Polymer composites . Volume 3 / / edited by Sabu Thomas, Kuruvilla Joseph, S. K. Malhotra, Koichi Goda, M. S. Sreekala |
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Pubbl/distr/stampa |
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Weinheim, Germany : , : Wiley-VCH, , 2014 |
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©2014 |
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ISBN |
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3-527-67424-1 |
3-527-67422-5 |
3-527-67425-X |
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Descrizione fisica |
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1 online resource (610 p.) |
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Altri autori (Persone) |
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ThomasSabu |
JosephKuruvilla |
MalhotraS. K |
GodaKoichi |
SreekalaM. S |
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Disciplina |
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Soggetti |
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Polymers |
Composite materials |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references at the end of each chapters and index. |
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Nota di contenuto |
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Polymer Composites; Title Page; Copyright; Contents; The Editors; List of Contributors; Chapter 1 Advances in Polymer Composites: Biocomposites- State of the Art, New Challenges, and Opportunities; 1.1 Introduction; 1.2 Development of Biocomposite Engineering; 1.3 Classification of Biocomposites; References; Chapter 2 Synthesis, Structure, and Properties of Biopolymers (Natural and Synthetic); 2.1 Introduction; 2.2 Classification; 2.3 Natural Biopolymers; 2.3.1 Proteins; 2.3.1.1 Collagen; 2.3.1.2 Elastin; 2.3.1.3 Albumin; 2.3.1.4 Fibrin; 2.3.1.5 Fibronectin; 2.3.1.6 Zein; 2.3.1.7 Gluten |
2.3.1.8 Gelatin 2.3.1.9 Soy Protein; 2.3.1.10 Whey Protein; 2.3.1.11 Casein; 2.3.2 Polysaccharides; 2.3.2.1 Cellulose; 2.3.2.2 Starch; 2.3.2.3 Chitosan; 2.3.2.4 Chitin; 2.3.2.5 Hyaluronic Acid (HA); 2.3.2.6 Alginic Acid; 2.3.2.7 Pectin; 2.3.3 Polysaccharides from Marine Sources; 2.3.3.1 Agar; 2.3.3.2 Agarose; 2.3.3.3 Alginic Acid/Alginate; 2.3.3.4 |
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Carrageenan; 2.3.3.5 Cutan; 2.3.3.6 Cutin; 2.3.4 Low Molecular Weight Biopolymers; 2.3.4.1 Guar Gum; 2.3.4.2 Rosin; 2.3.4.3 Chondroitin Sulfate; 2.3.4.4 Gum Copal; 2.3.4.5 Gum Damar; 2.3.5 Microbial Synthesized Biopolymers; 2.3.5.1 Pullulan |
2.3.5.2 Dextran 2.3.5.3 Curdlan; 2.3.5.4 Xanthan; 2.3.5.5 Bacterial Cellulose; 2.3.6 Natural Poly(Amino Acids); 2.3.6.1 Jute; 2.3.6.2 Coir; 2.3.6.3 Yarn; 2.3.6.4 Silk; 2.3.7 Nucleic Acids; 2.3.7.1 Natural Nucleic Acids; 2.3.7.2 Synthetic Nucleic Acids (SNA); 2.4 Synthetic Biopolymers; 2.4.1 Poly(Glycolide) PGA or Poly(Glycolic Acid); 2.4.2 Poly(Lactic Acid) (PLA); 2.4.3 Poly(Lactide-co-Glycolide); 2.4.4 Polycaprolactone (PCL); 2.4.5 Poly(p-Dioxanone) (PDO); 2.4.6 Poly(Trimethylene Carbonate) (PTMC); 2.4.7 Poly-Î2-Hydroxybutyrate (PHB); 2.4.8 Poly(Glycerol Sebacic Acid) (PGS) |
2.4.9 Poly(Propylene Fumarate) (PPF)2.4.10 Poly(Anhydrides) (PAs); 2.4.11 Poly(Orthoesters) (POEs); 2.4.12 Poly(Phosphazene); 2.4.13 Poly(Vinyl Alcohol) (PVA); 2.4.14 Poly(Hydroxyalkanoates) (PHAs); 2.4.15 Poly(Ester Amides) (PEAs); 2.5 Need for Biopolymers; 2.6 Exceptional Properties of Biopolymers; 2.7 Biomedical Polymers; 2.7.1 Chitosan; 2.7.2 Poly(Lactic Acid) (PLA); 2.7.3 Collagen; 2.7.4 Polycaprolactone (PCL); 2.7.5 Poly(2-Hydroxyethyl Methacrylate) (PHEMA); 2.7.6 Carbohydrate-Based Vaccines; 2.7.7 Chitin; 2.7.8 Albumin; 2.7.9 Fibrin; 2.7.10 Hyaluronic Acid (HA) |
2.7.11 Chondroitin Sulfate (CS) 2.7.12 Alginic Acid; 2.7.13 Poly(Anhydrides); 2.8 Composite Material; 2.9 Blends; 2.10 Applications of Biopolymers; 2.10.1 Medical Applications; 2.10.1.1 Surgical Sutures; 2.10.1.2 Bone Fixation Devices; 2.10.1.3 Vascular Grafts; 2.10.1.4 Adhesion Prevention; 2.10.1.5 Artificial Skin; 2.10.1.6 Drug Delivery Systems; 2.10.1.7 Artificial Corneas; 2.10.1.8 Artificial Blood Vessels; 2.10.2 Agricultural Applications; 2.10.2.1 Agricultural Mulches; 2.10.2.2 Controlled Release of Agricultural Chemicals; 2.10.2.3 Agricultural Planting Containers; 2.10.3 Packaging |
2.10.3.1 Starch-Based Packaging Materials |
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Sommario/riassunto |
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Polymer composites are materials in which the matrix polymer is reinforced with organic/inorganic fillers of a definite size and shape, leading to enhanced performance of the resultant composite. These materials find a wide number of applications in such diverse fields as geotextiles, building, electronics, medical, packaging, and automobiles. This first systematic reference on the topic emphasizes the characteristics and dimension of this reinforcement. The authors are leading researchers in the field from academia, government, industry, as well as private research institutions |
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