Multiscale Characterization of Biological Systems [electronic resource] : Spectroscopy and Modeling / by Vikas Tomar, Tao Qu, Devendra K. Dubey, Devendra Verma, Yang Zhang.
Material type:![Text](/opac-tmpl/lib/famfamfam/BK.png)
- text
- computer
- online resource
- 9781493934539
- 610.28 23
- R856-R857
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SARVAJNA LIBRARY, UHS, BAGALKOT | 610.28 (Browse shelf(Opens below)) | Link to resource | Available | Click on the URL to access eBook | EB72 |
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610 Pseudomonas | 610 High Pressure Bioscience | 610 Amniotic Membrane | 610.28 Multiscale Characterization of Biological Systems | 610.724 Introduction to Fluorescence Sensing | 610.724 Stem Cells: Basics and Clinical Translation | 611.01816 Anticancer Genes |
Introduction -- Spectroscopic Experiments: A Review of Raman Spectroscopy of Biological Systems.- Nanomechanics Experiments: A Microscopic Study of Mechanical Property Scale Dependence and Microstructure of Crustaceans’ Thin Films as Biomimetic Materials -- Molecular Modeling: A Review of Nanomechanics Based on Molecular Modeling -- Multiscaling for Molecular Models to Predict Lab Scale Sample Properties: A Review of Phenomenological Models -- Multiscaling for Molecular Models: Investigating Interface Thermomechanics -- Index.
This book covers the latest research work done in the area of interface mechanics of collagen and chitin-based biomaterials along with various techniques that can be used to understand mechanics of biological systems and materials. Topics covered include Raman spectroscopy of biological systems, scale dependence of the mechanical properties and microstructure of crustaceans thin films as biomimetic materials, as well as the role of molecular-level modeling. The use of nanomechanics to investigate interface thermomechanics of collagen and chitin-based biomaterials is also covered in detail. This book also: • Details spectroscope experiments as well as nanomechanic experiments • Reviews exhaustively phenomenological models and Raman spectroscopy of biological systems • Covers the latest in multiscaling for molecular models to predict lab-scale sample properties and investigates interface thermomechanics.
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