Libro adottato a Politecnico di Milano, a.a. 2026/2027 · 8 canali
«Patrick Tabeling – Introduction to Microfluidics» è adottato per Biochip dal prof. Marco Carminati (Biomedical Engineering, Electronics Engineering, Engineering Physics e altri corsi – Politecnico di Milano); per Continuous Manufacturing Of Pharmaceuticals dal prof. Gianvito Vilé (Chemical Engineering - Ingegneria Chimica, Food Engineering – Politecnico di Milano).
Come lo indica il docente: Patrick Tabeling, Introduction to Microfluidics, Oxford University Press, Anno edizione: 2010, ISBN: 9780199588169 · Patrick Tabeling, Introduction to Microfluidics, Oxford University Press, Anno edizione: 2023, ISBN: 9780191937606
ISBN
9780199588169
Chi lo adotta
Biochip – Prof. Marco Carminati (canale unico)Biomedical Engineering · Laurea triennale · esame facoltativo · 054085 CFU
Argomenti del programma: Topics The course is articulated in theoretical lessons, combined with quantitative exercises and with case studies oriented to the analysis and design of microsystems. An experimental laboratory consisting of: a design phase at home in teams with a propor design software and two days of experimental activity in the lab. (fabrication and characterization of a PDMS microfluidic device).
Slides, lecture notes, and research articles provided on the BeeP platform (beep.metid.polimi.it).
Argomenti del programma: Introduction to continuous pharmaceutical manufacturing: industrial motivation for continuous processing, advantages and challenges of flow manufacturing. Flow reactor technologies: design and operation of flow reactors for pharmaceutical synthesis, including micro- and mesoreactors, oscillatory flow reactors, microstructured and multifunctional reactors, and membrane reactors.
Argomenti del programma: Topics The course is articulated in theoretical lessons, combined with quantitative exercises and with case studies oriented to the analysis and design of microsystems. An experimental laboratory consisting of: a design phase at home in teams with a propor design software and two days of experimental activity in the lab. (fabrication and characterization of a PDMS microfluidic device).
Argomenti del programma: Topics The course is articulated in theoretical lessons, combined with quantitative exercises and with case studies oriented to the analysis and design of microsystems. An experimental laboratory consisting of: a design phase at home in teams with a propor design software and two days of experimental activity in the lab. (fabrication and characterization of a PDMS microfluidic device).
Slides, lecture notes, and research articles provided on the BeeP platform (beep.metid.polimi.it).
Argomenti del programma: Introduction to continuous pharmaceutical manufacturing: industrial motivation for continuous processing, advantages and challenges of flow manufacturing. Flow reactor technologies: design and operation of flow reactors for pharmaceutical synthesis, including micro- and mesoreactors, oscillatory flow reactors, microstructured and multifunctional reactors, and membrane reactors.
Argomenti del programma: Topics The course is articulated in theoretical lessons, combined with quantitative exercises and with case studies oriented to the analysis and design of microsystems. An experimental laboratory consisting of: a design phase at home in teams with a propor design software and two days of experimental activity in the lab. (fabrication and characterization of a PDMS microfluidic device).
Argomenti del programma: Topics The course is articulated in theoretical lessons, combined with quantitative exercises and with case studies oriented to the analysis and design of microsystems. An experimental laboratory consisting of: a design phase at home in teams with a propor design software and two days of experimental activity in the lab. (fabrication and characterization of a PDMS microfluidic device).
Argomenti del programma: Topics The course is articulated in theoretical lessons, combined with quantitative exercises and with case studies oriented to the analysis and design of microsystems. An experimental laboratory consisting of: a design phase at home in teams with a propor design software and two days of experimental activity in the lab. (fabrication and characterization of a PDMS microfluidic device).