Interfacial

Green by Design: Harnessing the power of bio-based polymers at interfaces  eBooks & eLearning

Posted by yoyoloit at Feb. 23, 2025
Green by Design: Harnessing the power of bio-based polymers at interfaces

Green by Design
by Kai Zhang, Philip Biehl

English | 2024 | ISBN: 0750361824 | 272 pages | True PDF EPUB | 46.22 MB

Nanocharacterization of Cementitious Composites  eBooks & eLearning

Posted by hill0 at March 29, 2025
Nanocharacterization of Cementitious Composites

Nanocharacterization of Cementitious Composites: Unveiling Properties at Multiscale
English | 2025 | ISBN: 9819629160 | 319 Pages | PDF (True) | 33 MB

Modular Design for Machine Tools (repost)  eBooks & eLearning

Posted by tot167 at July 16, 2010
Modular Design for Machine Tools (repost)

Yoshimi Ito, "Modular Design for Machine Tools"
McGraw-Hill Professional | 2008 | ISBN: 0071496602 | 530 pages | PDF | 24,9 MB
Introduction to Computational Mass Transfer: With Applications to Chemical Engineering

Introduction to Computational Mass Transfer: With Applications to Chemical Engineering by Kuo-Tsong Yu , Xigang Yuan
English | PDF (True) | 2014 | 343 Pages | ISBN : 3642539106 | 12.6 MB

This book presents a new computational methodology called Computational Mass Transfer (CMT). It offers an approach to rigorously simulating the mass, heat and momentum transfer under turbulent flow conditions with the help of two newly published models, namely the C’2—εC’ model and the Reynolds mass flux model, especially with regard to predictions of concentration, temperature and velocity distributions in chemical and related processes. The book will also allow readers to understand the interfacial phenomena accompanying the mass transfer process and methods for modeling the interfacial effect, such as the influences of Marangoni convection and Rayleigh convection. The CMT methodology is demonstrated by means of its applications to typical separation and chemical reaction processes and equipment, including distillation, absorption, adsorption and chemical reactors.
Physicochemical and Enzymatic Modification of Gums: Synthesis, Characterization and Application

Hadi Hashemi Gahruie, "Physicochemical and Enzymatic Modification of Gums: Synthesis, Characterization and Application"
English | ISBN: 303087995X | 2022 | 276 pages | EPUB | 13 MB

Falling Liquid Films (repost)  eBooks & eLearning

Posted by libr at July 9, 2013
Falling Liquid Films (repost)

S. Kalliadasis, "Falling Liquid Films"
English | 2011 | ISBN: 1848823665 | 455 pages | PDF | 8,9 MB

Falling Liquid Films gives a detailed review of state-of-the-art theoretical, analytical and numerical methodologies, for the analysis of dissipative wave dynamics and pattern formation on the surface of a film falling down a planar inclined substrate.

Handbook of Biofunctional Surfaces  eBooks & eLearning

Posted by arundhati at Oct. 1, 2013
Handbook of Biofunctional Surfaces

Wolfgang Knoll, "Handbook of Biofunctional Surfaces"
2013 | ISBN-10: 9814316636 | 1184 pages | PDF | 21 MB

Introduction to Theoretical and Computational Fluid Dynamics  eBooks & eLearning

Posted by step778 at Feb. 14, 2019
Introduction to Theoretical and Computational Fluid Dynamics

Constantine Pozrikidis, "Introduction to Theoretical and Computational Fluid Dynamics"
2011 | pages: 1274 | ISBN: 0199752079 | PDF | 6,1 mb

Polypropylene Structure, blends and Composites: Volume 3 Composites  eBooks & eLearning

Posted by insetes at Feb. 5, 2019
Polypropylene Structure, blends and Composites: Volume 3 Composites

Polypropylene Structure, blends and Composites: Volume 3 Composites By B. Pukánszky (auth.), J. Karger-Kocsis (eds.)
1995 | 377 Pages | ISBN: 9401042330 | PDF | 13 MB

Polypropylene Structure, blends and composites: Volume 2 Copolymers and Blends  eBooks & eLearning

Posted by insetes at Feb. 5, 2019
Polypropylene Structure, blends and composites: Volume 2 Copolymers and Blends

Polypropylene Structure, blends and composites: Volume 2 Copolymers and Blends By P. Galli, J. C. Haylock, T. Simonazzi (auth.), J. Karger-Kocsis (eds.)
1995 | 205 Pages | ISBN: 9401042322 | PDF | 6 MB