Paper Microfluidics

Theory and Applications

Avinash K Agarwal (Hrsg.), Sanjay Kumar (Hrsg.), Shantanu Bhattacharya (Hrsg.)

PDF
ca. 96,29
Amazon iTunes Thalia.de Weltbild.de Hugendubel Bücher.de ebook.de kobo Osiander Google Books Barnes&Noble bol.com Legimi yourbook.shop Kulturkaufhaus ebooks-center.de
* Affiliatelinks/Werbelinks
Hinweis: Affiliatelinks/Werbelinks
Links auf reinlesen.de sind sogenannte Affiliate-Links. Wenn du auf so einen Affiliate-Link klickst und über diesen Link einkaufst, bekommt reinlesen.de von dem betreffenden Online-Shop oder Anbieter eine Provision. Für dich verändert sich der Preis nicht.

Springer Singapore img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Genetik, Gentechnik

Beschreibung

This volume provides an overview of the recent advances in the field of paper microfluidics, whose  innumerable research domains have stimulated considerable efforts to the development of rapid, cost-effective and simplified point-of-care diagnostic systems. The book is divided into three parts viz. theoretical background of paper microfluidics, fabrication techniques for paper-based devices, and broad applications. Each chapter of the book is self-explanatory and focuses on a specific topic and its relation to paper microfluidics and starts with a brief description of the topic’s physical background, essential definitions, and a short story of the recent progress in the relevant field. The book also covers the future outlook, remaining challenges, and emerging opportunities. This book shall be a tremendous up-to-date resource for researchers working in the area globally.

Weitere Titel in dieser Kategorie
Cover Engineering Granular Microbiomes
David Gregory Weissbrodt
Cover Epigenetics and Health
Michelle McCulley
Cover Epigenetics and Health
Michelle McCulley
Cover Biotech Challenges
Catherine Regnault-Roger
Cover Theoretical Genetics
Richard B. Goldschmidt

Kundenbewertungen

Schlagwörter

Energy Storage, Point-of-Care Diagnostics, biochemical engineering, Wearable Sensors, Capillary Flow, Paper Microfluidics