| Titre : |
Advances in MEMS and microfluidic systems |
| Type de document : |
document électronique |
| Auteurs : |
Rajeev Kumar Singh, Éditeur scientifique ; Rakesh Kumar Phanden, Éditeur scientifique ; Basant Singh Sikarwar, Éditeur scientifique ; J. Paulo Davim, Éditeur scientifique |
| Editeur : |
IGI Global |
| Année de publication : |
2023 |
| Collection : |
Advances in mechatronics and mechanical engineering (AMME) book series |
| Importance : |
1 fichier PDF (10.6 Mo) |
| ISBN/ISSN/EAN : |
978-1-66846-954-5 |
| Note générale : |
Mode d'accès : accès au texte intégral par :
- authentification après inscription à la plateforme EBSCOhost
ou
- adresse IP de l'École.
Bibliogr at the end of chapters. - Index |
| Langues : |
Anglais (eng) |
| Mots-clés : |
Microfluidics
Microelectromechanical systems |
| Index. décimale : |
621.38 Dispositifs électroniques. Tubes à électrons. photocellules. Accélérateur de particules. Tubes à rayons X |
| Résumé : |
Advances in MEMS and Microfluidic Systems explores the emerging research and advances in MEMS device and microfluidic systems applications. It features in-depth chapters on microfluidic device design and fabrication as well as on the aspects of devices/systems, characterization, and comparative research findings. Covering topics such as biosensors, lab-on-a-chip, and microfluidic technology, this premier reference source is an indispensable resource for engineers, health professionals, students and educators of higher education, librarians, researchers, and academicians. |
| Note de contenu : |
Summary :
1. Introduction to MEMS and microfluidics
2. Exploring the frontiers of microfluidics: challenges and future prospects
3. Microfluidics: from evolution and applications to potential prospects and challenges
4. Advances in micropumps for microfluidic systems: challenges and opportunities – recent trends in micropumps
5. Micropumps for lab-on-chip applications
6. Advances in paper-based microfluidics: from fabrication to applications
7. Paper-based microfluidic devices for pesticide detection
8. Application of MEMS sensors in IoT-Integrated frameworks
9. Microfluidic synthesis of nanoparticles
10. Design, development, and applications of microfluidics for rapid detection and quantization of microparticles
11. Fabrication methods for bio-MEMS
12. Microfluidic technology for advanced drug delivery systems
13. Modern Lab-on-Chip biosensors application on infectious COVID-19 detection |
Advances in MEMS and microfluidic systems [document électronique] / Rajeev Kumar Singh, Éditeur scientifique ; Rakesh Kumar Phanden, Éditeur scientifique ; Basant Singh Sikarwar, Éditeur scientifique ; J. Paulo Davim, Éditeur scientifique . - IGI Global, 2023 . - 1 fichier PDF (10.6 Mo). - ( Advances in mechatronics and mechanical engineering (AMME) book series) . ISBN : 978-1-66846-954-5 Mode d'accès : accès au texte intégral par :
- authentification après inscription à la plateforme EBSCOhost
ou
- adresse IP de l'École.
Bibliogr at the end of chapters. - Index Langues : Anglais ( eng)
| Mots-clés : |
Microfluidics
Microelectromechanical systems |
| Index. décimale : |
621.38 Dispositifs électroniques. Tubes à électrons. photocellules. Accélérateur de particules. Tubes à rayons X |
| Résumé : |
Advances in MEMS and Microfluidic Systems explores the emerging research and advances in MEMS device and microfluidic systems applications. It features in-depth chapters on microfluidic device design and fabrication as well as on the aspects of devices/systems, characterization, and comparative research findings. Covering topics such as biosensors, lab-on-a-chip, and microfluidic technology, this premier reference source is an indispensable resource for engineers, health professionals, students and educators of higher education, librarians, researchers, and academicians. |
| Note de contenu : |
Summary :
1. Introduction to MEMS and microfluidics
2. Exploring the frontiers of microfluidics: challenges and future prospects
3. Microfluidics: from evolution and applications to potential prospects and challenges
4. Advances in micropumps for microfluidic systems: challenges and opportunities – recent trends in micropumps
5. Micropumps for lab-on-chip applications
6. Advances in paper-based microfluidics: from fabrication to applications
7. Paper-based microfluidic devices for pesticide detection
8. Application of MEMS sensors in IoT-Integrated frameworks
9. Microfluidic synthesis of nanoparticles
10. Design, development, and applications of microfluidics for rapid detection and quantization of microparticles
11. Fabrication methods for bio-MEMS
12. Microfluidic technology for advanced drug delivery systems
13. Modern Lab-on-Chip biosensors application on infectious COVID-19 detection |
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