Florin Emilian Danes,Silvia Danes,Valeria Petrescu,Eleonora-Mihaela Ungureanu
Molecular Physical Chemistry for Engineering Applications
Molecular Physical Chemistry for Engineering Applications
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This textbook introduces the molecular side of physical chemistry, presenting numerous applications and solved problems to illustrate concepts for varied and complex technical situations. It is organized into three main topics and is designed for upper-level undergraduate and graduate courses in physical chemistry for engineers, applied physical chemistry, transport phenomena, colloidal chemistry, and transport/transfer processes. It offers modeling techniques and tools for solving exercises and practical cases, as well as solutions and conclusions to help students understand how to approach complex issues.
Format: Paperback / softback
Length: 383 pages
Publication date: 07 July 2022
Publisher: Springer Nature Switzerland AG
This comprehensive textbook delves into the molecular aspects of physical chemistry, presenting a fresh and innovative approach to the subject. It caters to students and practitioners alike, offering a wealth of applications and solved problems that vividly illustrate the concepts introduced for diverse and intricate technical scenarios. The book strikes a perfect balance between theory, practical tools, and real-world applications, making it an invaluable resource for solving engineering problems in industries where the chemical composition and physical properties of matter play a crucial role.
Organized into three main sections, the text begins by exploring the molecular structure of matter, providing a solid foundation for subsequent chapters. In Part II, molecular models in thermodynamics are introduced, offering valuable insights into the behavior of molecules and systems. Part III focuses on transport phenomena and mechanisms, shedding light on the movement of molecules and the processes that govern their behavior.
Throughout the book, methods of analysis are presented to study the molecular behavior within a given system. These methods are then applied to examine the states of a material system and analyze the processes that occur when the system is in a state of non-equilibrium, particularly emphasizing transport phenomena.
Molecular Physical Chemistry for Engineering Applications is meticulously designed for upper-level undergraduate and graduate courses in physical chemistry for engineers, applied physical chemistry, transport phenomena, colloidal chemistry, and transport/transfer processes. It serves as a valuable reference guide for engineers, technicians, and scientists engaged in industrial endeavors.
One of the key strengths of this textbook is its comprehensive coverage of modeling techniques and tools. These resources enable students to apply theoretical concepts to practical exercises and real-world cases, fostering a deeper understanding of the subject matter. Additionally, the book provides detailed solutions and conclusions, allowing students to follow the results closely and gain a comprehensive grasp of the topics discussed.
The step-by-step problem-solving approach employed in the book empowers students to approach complex issues with confidence and clarity. By breaking down problems into manageable steps, students can develop a systematic approach to problem-solving, which is essential for success in the field of engineering.
In conclusion, Molecular Physical Chemistry for Engineering Applications is an exceptional textbook that excels in its ability to bridge the gap between theory and practice. By presenting a wealth of applications and solved problems, coupled with comprehensive analysis methods and practical tools, it equips students with the knowledge and skills necessary to excel in the field of engineering. Whether you are a student seeking to enhance your understanding of physical chemistry or an industry professional seeking to apply your knowledge in real-world scenarios, this book is an indispensable resource.
Weight: 635g
Dimension: 235 x 155 (mm)
ISBN-13: 9783030638986
Edition number: 1st ed. 2021
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