Tag: Reaction

Biochemical Reaction Engineering


Free Download Biochemical Reaction Engineering
English | 2025 | ISBN: 0367750678 | 300 Pages | PDF EPUB (True) | 17 MB
This textbook comprehensively covers fundamental and advanced aspects of biochemical engineering along with MATLAB codes. It comprehensively covers important topics including enzyme catalyzed reaction kinetics, catalytic antibodies and non-protein biomolecules as catalysts, process flow diagram (PFD), piping & instrumentation diagram (P&ID), wastewater treatment processes, design of fermenters and mass and energy balance. Pedagogical features including solved problems and unsolved exercises are interspersed throughout the text for better understanding.

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The Dynamics of Front Propagation in Nonlocal Reaction-Diffusion Equations


Free Download The Dynamics of Front Propagation in Nonlocal Reaction-Diffusion Equations
English | 2024 | ISBN: 3031777719 | 210 Pages | PDF EPUB (True) | 18 MB
The book provides a self-contained and complete description of the long time evolution of the solutions to a class of one-dimensional reaction-diffusion equations, in which the diffusion is given by an integral operator. The underlying motivation is the mathematical analysis of models for biological invasions. The model under study, while simple looking, is of current use in real-life situations. Interestingly, it arises in totally different contexts, such as the study of branching random walks in probability theory. While the model has attracted a lot of attention, and while many partial results about the time-asymptotic behaviour of its solutions have been proved over the last decades, some basic questions on the sharp asymptotics have remained unanswered. One ambition of this monograph is to close these gaps. In some of the situations that we envisage, the level sets organise themselves into an invasion front that is asymptotically linear in time, up to a correction that converges exponentially in time to a constant. In other situations that constitute the main and newest part of the work, the correction is asymptotically logarithmic in time. Despite these apparently different behaviours, there is an underlying common way of thinking that is underlined. At the end of each chapter, a long set of problems is proposed, many of them rather elaborate and suitable for master’s projects or even the first question in a PhD thesis. Open questions are also discussed. The ideas presented in the book apply to more elaborate systems modelling biological invasions or the spatial propagation of epidemics. The models themselves may be multidimensional, but they all have in common a mechanism imposing the propagation in a given direction; examples are presented in the problems that conclude each chapter. These ideas should also be useful in the treatment of further models that we are not able to envisage for the time being. The book is suitable for graduate or PhD students as well as researchers.

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MODERN TRENDS IN CHEMICAL REACTION DYNAMICS – PART II EXPERIMENT AND THEORY


Free Download Kopin Liu, "MODERN TRENDS IN CHEMICAL REACTION DYNAMICS – PART II: EXPERIMENT AND THEORY "
English | ISBN: 9812389237 | 2004 | 540 pages | PDF | 23 MB
The field of chemical reaction dynamics has made tremendous progress during the last decade or so. This is due largely to the development of many new, state-of-the-art experimental and theoretical techniques during that period. It is beneficial to present these advances, both theoretical and experimental, in a review volume (Parts I and II). The primary purpose of this review volume is to provide graduate students and experts in the field with a rather detailed picture of the current status of advanced experimental and theoretical research in chemical reaction dynamics. All chapters in these two parts have been written by world-renowned experts active in such research.

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Gas Phase Chemical Reaction Systems Experiments and Models 100 Years After Max Bodenstein Proceedings of an International Symp


Free Download Gas Phase Chemical Reaction Systems: Experiments and Models 100 Years After Max Bodenstein Proceedings of an International Symposion, held at the "Internationales Wissenschaftsforum Heidelberg", Heidelberg, Germany, July 25 – 28, 1995 By A. H. Zewail (auth.), Professor Dr. J. Wolfrum, Dr. H.-R. Volpp, Professor Dr. R. Rannacher, Professor Dr. J. Warnatz (eds.)
1996 | 343 Pages | ISBN: 3642803016 | PDF | 19 MB
Gas Phase Chemical Reachtion Systems consists of edited papers presented at the International Symposion Gas Phase Chemical ReactionSystems:Experiments and Models 100 Years after MaxBodenstein, held at Heidelberg. It is divided into six sections, reflecting the diversity of the topics discussed. Part I is devoted to experimental reaction dynamics studies employing laser and molecular-beam techniques. Part II is the theoretical counterpart of Part I. Part III summarizes the current status of the Bodenstein (H2+I2) "textbook reaction" with experimental and theoretical results. Part IV shows the different approaches for the calculation of state-specific and thermal rate data. Part V includes papers from the "heterogeneous reactions" session and Part VI is devoted to the mathematical modelling of turbulence, reactive flows and complex chemical reaction systems.

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Reaction-Diffusion Automata Phenomenology, Localisations, Computation


Free Download Reaction-Diffusion Automata: Phenomenology, Localisations, Computation By Andrew Adamatzky (auth.)
2013 | 330 Pages | ISBN: 364231077X | PDF | 78 MB
Reaction-diffusion and excitable media are amongst most intriguing substrates. Despite apparent simplicity of the physical processes involved the media exhibit a wide range of amazing patterns: from target and spiral waves to travelling localisations and stationary breathing patterns. These media are at the heart of most natural processes, including morphogenesis of living beings, geological formations, nervous and muscular activity, and socio-economic developments.This book explores a minimalist paradigm of studying reaction-diffusion and excitable media using locally-connected networks of finite-state machines: cellular automata and automata on proximity graphs. Cellular automata are marvellous objects per se because they show us how to generate and manage complexity using very simple rules of dynamical transitions. When combined with the reaction-diffusion paradigm the cellular automata become an essential user-friendly tool for modelling natural systems and designing future and emergent computing architectures.The book brings together hot topics of non-linear sciences, complexity, and future and emergent computing. It shows how to discover propagating localisation and perform computation with them in very simple two-dimensional automaton models. Paradigms, models and implementations presented in the book strengthen the theoretical foundations in the area for future and emergent computing and lay key stones towards physical embodied information processing systems.

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Biological Reaction Engineering Dynamic Modelling Fundamentals with Simulation Examples, Second Edition


Free Download Biological Reaction Engineering: Dynamic Modelling Fundamentals with Simulation Examples, Second Edition By Dr. Irving J. Dunn, Professor Dr. Elmar Heinzle, Dr. John Ingham, Dr. Jiri E. Prenosil(auth.)
2003 | 521 Pages | ISBN: 3527307591 | PDF | 28 MB
In this book, the modelling of dynamic biological engineering processes is presented in a highly understandable way using the unique combination of simplified fundamental theory and direct hands-on computer simulation. The mathematics is kept to a minimum, and yet the 60 examples supplied on a CD-ROM illustrate almost every aspect of biological engineering science. Each example is described in detail, including the model equations. The programms are written in the modern user-friendly simulation language Berkeley Madonna, which can be run on both Windows PC and Power-Macintosh computers. Madonna solves models comprising many ordinary differential equations using very simple programming, including arrays. It is so powerful that the model parameters may be defined as "sliders", which allow the effect of their change on the model behavior to be seen almost immediately. Data may be included for curve fitting, and sensitivity or multiple runs may be performed. The results can be seen simultaneously on multiple-graph windows or by using overlays. The examples can be varied to fit any real situation, and the suggested exercises provide practical guidance. The extensive experience of the authors, both in university teaching and international courses, is reflected in this well-balanced presentation, which is suitable for the teacher, the student, the biochemist or the engineer. Content: Chapter 1 Modelling Principles (pages 9-53): Chapter 2 Basic Bioreactor Concepts (pages 55-66): Chapter 3 Biological Kinetics (pages 67-100): Chapter 4 Bioreactor Modelling (pages 101-116): Chapter 5 Mass Transfer (pages 117-143): Chapter 6 Diffusion and Biological Reaction In Immobilized Biocatalyst Systems (pages 145-160): Chapter 7 Automatic Bioprocess Control Fundamentals (pages 161-179): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Sections 8.1 ? 8.2 (pages 192-224): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Section 8.3 (pages 224-257): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Sections 8.4.1 ? 8.4.7 (pages 257-289): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Sections 8.4.8 ? 8.4.13 (pages 290-317): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Section 8.5 (pages 318-353): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Section 8.6 (pages 354-371): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Section 8.7 (pages 371-399): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Sections 8.8.1 ? 8.8.5 (pages 400-425): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Sections 8.8.6 ? 8.8.9 (pages 425-450): Chapter 8 Simulation Examples of Biological Reaction Processes Using Berkeley Madonna: Section 8.9 (pages 451-482):

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Reunion and Reaction The Compromise of 1877 and the End of Reconstruction


Free Download C. Vann Woodward, "Reunion and Reaction: The Compromise of 1877 and the End of Reconstruction"
English | ISBN: 0195064232 | | 288 pages | AZW3 | 3 MB
Between the era of America’s landmark antebellum compromises and that of the Compromise of 1877, a war had intervened, destroying the integrity of the Southern system but failing to determine the New South’s relation to the Union. While it did not restore the old order in the South, or restore the South to parity with the Union, it did lay down the political foundations for reunion, bring Reconstruction to an end, and shape the future of four million freedmen.

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Nano-electrocatalyst for Oxygen Reduction Reaction


Free Download Nano-electrocatalyst for Oxygen Reduction Reaction: Fundamentals to Field Applications
English | 2024 | ISBN: 1032369736 | 350 Pages | PDF (True) | 21 MB
Global warming switches our reliance from fossil fuels to green, sustainable renewable energy sources. Because of its promising nature, high-efficiency nano-electrocatalysts have sparked interest in renewable energy. Hydrogen fuel cell/polymer electrolyte membrane (PEM) vehicles are the most environmentally conscious electromobility vehicles, with a high energy density and quick refuelling technology, prompting the auto industry to launch a variety of PEM fuel cell vehicles around the world. Oxygen reduction reaction (ORR) primary research interests include fuel cells and metal-air batteries. The sluggish kinetic reaction of ORR, which is responsible for the rate-limiting reaction at the PEM fuel cell cathodic system, further decreases energy efficiency. Optimising ORR for market expansion with cost-effective and efficient nano-electrocatalysts, on the other hand, remains a challenge.

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