Kinematics And Dynamics of Multibody Systems With Imperfect Joints

The Dynamics of Biological Systems (Mathematics of Planet Earth)  eBooks & eLearning

Posted by roxul at Oct. 2, 2019
The Dynamics of Biological Systems (Mathematics of Planet Earth)

Arianna Bianchi, "The Dynamics of Biological Systems (Mathematics of Planet Earth)"
English | ISBN: 3030225828 | 2019 | 267 pages | PDF | 29 MB

Dynamics of Information Systems: Computational and Mathematical Challenges  eBooks & eLearning

Posted by roxul at Aug. 25, 2019
Dynamics of Information Systems: Computational and Mathematical Challenges

Chrysafis Vogiatzis, "Dynamics of Information Systems: Computational and Mathematical Challenges "
English | ISBN: 3319100459 | 2014 | 204 pages | EPUB, PDF | 3 MB + 5 MB
Dynamics of Number Systems: Computation with Arbitrary Precision (Studies in Systems, Decision and Control) [Repost]

Dynamics of Number Systems: Computation with Arbitrary Precision (Studies in Systems, Decision and Control) by Petr Kurka
ISBN: 3319333666 | 224 pages | PDF | June 2, 2016 | English | 6.19 Mb
Handbook of research on multi-agent systems: semantics and dynamics of organizational models

Handbook of research on multi-agent systems: semantics and dynamics of organizational models By Virginia Dignum
2010 | 631 Pages | ISBN: 1605662577 | PDF | 14 MB
Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle

Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle By Alessio Sapienza
English | PDF,EPUB | 2018 | 94 Pages | ISBN : 3319512854 | 5.7 MB

This book investigates the adsorption dynamics of water, methanol, ethanol, and ammonia vapor on loose and consolidated adsorbent beds, as well as the impact of this aspect on the overall performance of adsorption systems for heat transformation. In particular, it presents the results of kinetic measurements made using the large temperature jump (LTJ) method, the most efficient way to study adsorption dynamics under realistic operating conditions for adsorptive heat transformers. The information provided is especially beneficial for all those working on the development of novel adsorbent materials and advanced adsorbers for heating and cooling applications.
Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle

Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle By Alessio Sapienza
English | PDF,EPUB | 2018 | 94 Pages | ISBN : 3319512854 | 5.7 MB

This book investigates the adsorption dynamics of water, methanol, ethanol, and ammonia vapor on loose and consolidated adsorbent beds, as well as the impact of this aspect on the overall performance of adsorption systems for heat transformation. In particular, it presents the results of kinetic measurements made using the large temperature jump (LTJ) method, the most efficient way to study adsorption dynamics under realistic operating conditions for adsorptive heat transformers. The information provided is especially beneficial for all those working on the development of novel adsorbent materials and advanced adsorbers for heating and cooling applications.

Submodularity in Dynamics and Control of Networked Systems  eBooks & eLearning

Posted by roxul at April 24, 2018
Submodularity in Dynamics and Control of Networked Systems

Andrew Clark, "Submodularity in Dynamics and Control of Networked Systems"
English | 2016 | ISBN-10: 3319269755 | 210 pages | EPUB | 4 MB
Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle

Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle By Alessio Sapienza
English | PDF,EPUB | 2018 | 94 Pages | ISBN : 3319512854 | 5.7 MB

This book investigates the adsorption dynamics of water, methanol, ethanol, and ammonia vapor on loose and consolidated adsorbent beds, as well as the impact of this aspect on the overall performance of adsorption systems for heat transformation. In particular, it presents the results of kinetic measurements made using the large temperature jump (LTJ) method, the most efficient way to study adsorption dynamics under realistic operating conditions for adsorptive heat transformers. The information provided is especially beneficial for all those working on the development of novel adsorbent materials and advanced adsorbers for heating and cooling applications.
Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle

Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle By Alessio Sapienza
English | PDF,EPUB | 2018 | 94 Pages | ISBN : 3319512854 | 5.7 MB

This book investigates the adsorption dynamics of water, methanol, ethanol, and ammonia vapor on loose and consolidated adsorbent beds, as well as the impact of this aspect on the overall performance of adsorption systems for heat transformation. In particular, it presents the results of kinetic measurements made using the large temperature jump (LTJ) method, the most efficient way to study adsorption dynamics under realistic operating conditions for adsorptive heat transformers. The information provided is especially beneficial for all those working on the development of novel adsorbent materials and advanced adsorbers for heating and cooling applications.
Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle

Dynamics of Adsorptive Systems for Heat Transformation: Optimization of Adsorber, Adsorbent and Cycle By Alessio Sapienza
English | PDF,EPUB | 2018 | 94 Pages | ISBN : 3319512854 | 5.7 MB

This book investigates the adsorption dynamics of water, methanol, ethanol, and ammonia vapor on loose and consolidated adsorbent beds, as well as the impact of this aspect on the overall performance of adsorption systems for heat transformation. In particular, it presents the results of kinetic measurements made using the large temperature jump (LTJ) method, the most efficient way to study adsorption dynamics under realistic operating conditions for adsorptive heat transformers. The information provided is especially beneficial for all those working on the development of novel adsorbent materials and advanced adsorbers for heating and cooling applications.