Complex Liquids, Polymers and Membranes
Complex Liquids, Polymers and Membranes
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- More about Complex Liquids, Polymers and Membranes
Complex Liquids, Polymers, and Membranes explores soft materials' structure, bonding, and properties, including biomaterials and thin films and tubes, using experimental and theoretical tools.
Format: Hardback
Length: 600 pages
Publication date: 01 January 2021
Publisher: Taylor & Francis Inc
Complex Liquids, Polymers, and Membranes is a comprehensive guide to the behavior of soft materials, including liquids, polymers, and liquid crystals. It provides readers with the necessary experimental and theoretical tools to study their structure, bonding, and properties, and introduces biomaterials and thin films and tubes made out of soft materials.
Complex Liquids, Polymers, and Membranes
Complex Liquids, Polymers, and Membranes is a comprehensive guide to the behavior of soft materials, including liquids, polymers, and liquid crystals. It provides readers with the necessary experimental and theoretical tools to study their structure, bonding, and properties, and introduces biomaterials and thin films and tubes made out of soft materials.
Introduction
Soft materials are characterized by their ability to flow, deform, and change shape under various conditions. They are found in a wide range of applications, including food, medicine, and engineering. Understanding the behavior of soft materials is essential for developing new technologies and improving existing ones. Complex Liquids, Polymers, and Membranes provides a comprehensive overview of the field, covering topics such as structure, bonding, and properties.
Structure
Soft materials are composed of molecules that are held together by weak intermolecular forces. These forces can be broken by external forces, such as heat, pressure, or chemical reactions. The structure of soft materials can be studied using a variety of experimental techniques, such as X-ray diffraction, NMR spectroscopy, and electron microscopy. X-ray diffraction is used to determine the crystal structure of soft materials, while NMR spectroscopy is used to study the chemical structure of soft materials. Electron microscopy is used to study the microstructure of soft materials.
Bonding
Soft materials are held together by weak intermolecular forces, which can be broken by external forces. The strength of these forces can be measured using a variety of experimental techniques, such as tensile testing, shear testing, and compression testing. Tensile testing is used to measure the strength of a material when it is pulled, while shear testing is used to measure the strength of a material when it is sheared. Compression testing is used to measure the strength of a material when it is compressed.
Properties
Soft materials have a wide range of properties, including viscosity, elasticity, and thermal conductivity. Viscosity is the resistance of a material to flow, while elasticity is the ability of a material to return to its original shape after being deformed. Thermal conductivity is the ability of a material to transfer heat.
Biomaterials
Biomaterials are materials that are used in medical applications, such as implants, prosthetics, and tissue engineering. They are designed to be biocompatible, which means that they are safe for use in the human body. Biomaterials can be made out of a variety of soft materials, including polymers, liquid crystals, and biomaterials. Polymers are used to create implants, while liquid crystals are used to create prosthetics. Biomaterials are also used to create tissue engineering scaffolds.
Thin Films and Tubes
Thin films and tubes are made out of soft materials and are used in a wide range of applications, including electronics, optics, and medicine. Thin films are used to create electronic devices, such as transistors and diodes, while tubes are used to create medical devices, such as catheters and stents. Thin films and tubes can be made out of a variety of soft materials, including polymers, liquid crystals, and biomaterials.
Conclusion
Complex Liquids, Polymers, and Membranes is a comprehensive guide to the behavior of soft materials, including liquids, polymers, and liquid crystals. It provides readers with the necessary experimental and theoretical tools to study their structure, bonding, and properties, and introduces biomaterials and thin films and tubes made out of soft materials. By understanding the behavior of soft materials, we can develop new technologies and improve existing ones, which will have a positive impact on our lives.
Dimension: 235 x 156 (mm)
ISBN-13: 9781466577046
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