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Nanoscale and Microscale Phenomena - Fundamentals and Applications (Hardcover, 2015 ed.): Yogesh M. Joshi, Sameer Khandekar Nanoscale and Microscale Phenomena - Fundamentals and Applications (Hardcover, 2015 ed.)
Yogesh M. Joshi, Sameer Khandekar
R4,825 R3,614 Discovery Miles 36 140 Save R1,211 (25%) Ships in 12 - 17 working days

The book is an outcome of research work in the areas of nanotechnology, interfacial science, nano- and micro-fluidics and manufacturing, soft matter, and transport phenomena at nano- and micro-scales. The contributing authors represent prominent research groups from Indian Institute of Technology Bombay, Indian Institute of Technology Kanpur and Indian Institute of Science, Bangalore. The book has 13 chapters and the entire work presented in the chapters is based on research carried out over past three years. The chapters are designed with number of coloured illustrations, figures and tables. The book will be highly beneficial to academicians as well as industrial professionals working in the mentioned areas.

Dropwise Condensation on Inclined Textured Surfaces (Paperback, 2014 ed.): Sameer Khandekar, Krishnamurthy Muralidhar Dropwise Condensation on Inclined Textured Surfaces (Paperback, 2014 ed.)
Sameer Khandekar, Krishnamurthy Muralidhar
R1,934 Discovery Miles 19 340 Ships in 10 - 15 working days

Dropwise Condensation on Textured Surfaces presents a holistic framework for understanding dropwise condensation through mathematical modeling and meaningful experiments. The book presents a review of the subject required to build up models as well as to design experiments. Emphasis is placed on the effect of physical and chemical texturing and their effect on the bulk transport phenomena. Application of the model to metal vapor condensation is of special interest. The unique behavior of liquid metals, with their low Prandtl number and high surface tension, is also discussed. The model predicts instantaneous drop size distribution for a given level of substrate subcooling and derives local as well as spatio-temporally averaged heat transfer rates and wall shear stress.

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