Search

Your search keyword '"Cesar Parra-Cabrera"' showing total 32 results

Search Constraints

Start Over You searched for: "Cesar Parra-Cabrera" Remove constraint "Cesar Parra-Cabrera"
32 results on '"Cesar Parra-Cabrera"'

Search Results

4. Scattering Model for Composite Stereolithography to Enable Resin–Filler Selection and Cure Depth Control

11. Correction: 4D synchrotron microtomography and pore-network modelling for direct in situ capillary flow visualization in 3D printed microfluidic channels

12. 4D synchrotron microtomography and pore-network modelling for direct in-situ capillary flow visualization in 3D printed microfluidic channels

13. 3D printing in chemical engineering and catalytic technology: structured catalysts, mixers and reactors

14. Microfluidic Devices: 3D Printing of Monolithic Capillarity‐Driven Microfluidic Devices for Diagnostics (Adv. Mater. 25/2021)

15. 3D Printing of Monolithic Capillarity‐Driven Microfluidic Devices for Diagnostics

16. 3D-printing of transparent bio-microfluidic devices in PEG-DA

17. Desktop-Stereolithography 3D-Printing of a Poly(dimethylsiloxane)-Based Material with Sylgard-184 Properties

18. Ceramic Foams with Controlled Geometries Through 3D-Printed Sacrificial Templates.

19. Powder‐Based 3D Printing of Autonomous Concentration Gradient Generators.

20. Additive Manufacturing of Subject‐Conformal Receive Coils for Magnetic Resonance Imaging.

21. Multiscale modelling of capillary imbibition in 3D-printed porous microfluidic channels.

24. Contents list.

25. 4D synchrotron microtomography and pore-network modelling for direct in situ capillary flow visualization in 3D printed microfluidic channels.

28. 3D printing in chemical engineering and catalytic technology: structured catalysts, mixers and reactors.

29. Contents list.

30. 3D-printing of transparent bio-microfluidic devices in PEG-DA.

31. New Findings in Applied Materials Described from University of Leuven (KU Leuven) (A Multistep Immunoassay On a 3d-printed Capillarity-driven Microfluidic Device for Point-of-care Diagnostics).

32. Correction: 4D synchrotron microtomography and pore-network modelling for direct in situ capillary flow visualization in 3D printed microfluidic channels.

Catalog

Books, media, physical & digital resources