A unique, accessible guide to the application of engineering methods to biological systems.
Presenting for the first time a practical, design-oriented, interdisciplinary approach to transport phenomena involving biological systems, Biological Process Engineering emphasizes the common aspects of the three main transport processes-fluid flow, heat transfer, and mass transfer. In clear and simple terms, it explores the relevance of these processes to broadly defined biological systems such as the growth of microbes in bioreactors, the leaching of pollutants into groundwater, and the chemistry of food manufacturing. Reaching well beyond standard applications in medicine and the environment to areas of biotechnology, aquaculture, agriculture, and food processing, this book promotes analogical thinking that will lead to creative solutions. While keeping the mathematics to a minimum, it explains principles of effective system modeling and demonstrates a wide variety of problem-solving techniques. Readers will find:
* Systems diagrams comparing and contrasting different transport processes
* Biological examples for all types of systems, including metabolic pathways, locomotion, reproduction, responses to thermal conditions, and more
* Numerous design charts and procedures
* An extensive collection of tables of parameter values, not found in any other text.
An ideal undergraduate text for biological engineering students taking courses in transport processes, Biological Process Engineering is also an excellent reference for practicing engineers. It introduces the reader to diverse biological phenomena, serves as a stepping-stone to more theoretical topics, and provides important insights into the fast-growing arena of biological engineering.
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ARTHUR T. JOHNSON, PhD, PE, is a professor in the Biological Resources Engineering Department at the University of Maryland at College Park. He is the author of Biomechanics and Exercise Physiology, published by Wiley.
A unique, accessible guide to the application of engineering methods to biological systems.
Presenting for the first time a practical, design-oriented, interdisciplinary approach to transport phenomena involving biological systems, Biological Process Engineering emphasizes the common aspects of the three main transport processes-fluid flow, heat transfer, and mass transfer. In clear and simple terms, it explores the relevance of these processes to broadly defined biological systems such as the growth of microbes in bioreactors, the leaching of pollutants into groundwater, and the chemistry of food manufacturing. Reaching well beyond standard applications in medicine and the environment to areas of biotechnology, aquaculture, agriculture, and food processing, this book promotes analogical thinking that will lead to creative solutions. While keeping the mathematics to a minimum, it explains principles of effective system modeling and demonstrates a wide variety of problem-solving techniques. Readers will find:
* Systems diagrams comparing and contrasting different transport processes
* Biological examples for all types of systems, including metabolic pathways, locomotion, reproduction, responses to thermal conditions, and more
* Numerous design charts and procedures
* An extensive collection of tables of parameter values, not found in any other text.
An ideal undergraduate text for biological engineering students taking courses in transport processes, Biological Process Engineering is also an excellent reference for practicing engineers. It introduces the reader to diverse biological phenomena, serves as a stepping-stone to more theoretical topics, and provides important insights into the fast-growing arena of biological engineering.
A unique, accessible guide to the application of engineering methods to biological systems.
Presenting for the first time a practical, design-oriented, interdisciplinary approach to transport phenomena involving biological systems, Biological Process Engineering emphasizes the common aspects of the three main transport processes-fluid flow, heat transfer, and mass transfer. In clear and simple terms, it explores the relevance of these processes to broadly defined biological systems such as the growth of microbes in bioreactors, the leaching of pollutants into groundwater, and the chemistry of food manufacturing. Reaching well beyond standard applications in medicine and the environment to areas of biotechnology, aquaculture, agriculture, and food processing, this book promotes analogical thinking that will lead to creative solutions. While keeping the mathematics to a minimum, it explains principles of effective system modeling and demonstrates a wide variety of problem-solving techniques. Readers will find:
* Systems diagrams comparing and contrasting different transport processes
* Biological examples for all types of systems, including metabolic pathways, locomotion, reproduction, responses to thermal conditions, and more
* Numerous design charts and procedures
* An extensive collection of tables of parameter values, not found in any other text.
An ideal undergraduate text for biological engineering students taking courses in transport processes, Biological Process Engineering is also an excellent reference for practicing engineers. It introduces the reader to diverse biological phenomena, serves as a stepping-stone to more theoretical topics, and provides important insights into the fast-growing arena of biological engineering.
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Softcover. Zustand: Fine. Leichte Risse. This guide offers a practical, design-oriented approach to applying engineering methods to biological systems, focusing on transport phenomena such as fluid flow, heat transfer, and mass transfer. It explores their relevance to various biological systems, including microbial growth in bioreactors, pollutant leaching into groundwater, and food manufacturing chemistry. The content extends beyond traditional applications in medicine and the environment, delving into biotechnology, aquaculture, agriculture, and food processing, encouraging analogical thinking for innovative solutions. Mathematics is minimized, with an emphasis on effective system modeling and a variety of problem-solving techniques. Readers will encounter systems diagrams that compare different transport processes, biological examples across various systems (like metabolic pathways and responses to thermal conditions), design charts, and an extensive collection of parameter value tables unique to this text. This resource is ideal for undergraduate biological engineering students studying transport processes and serves as a valuable reference for practicing engineers. It introduces diverse biological phenomena, acts as a bridge to more theoretical topics, and offers insights into the rapidly evolving field of biological engineering. Bestandsnummer des Verkäufers d8f634c5-017a-4891-956c-5f70bf2a27a7
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