Stoichiometry and Process Calculations by K. V. Narayanan 2nd edition (informative)
Free download Stoichiometry and Process Calculation by K. V. Narayanan 2nd edition
2nd edition
Authors of: Stoichiometry and Process Calculations by K. V. Narayanan 2nd edition
K V Narayanan
K B Lakshmikutty
Table of Contents in Stoichiometry and Process Calculations by K. V. Narayanan 2nd edition
This textbook is specifically designed for undergraduate students pursuing chemical engineering and related disciplines such as biotechnology, polymer technology, petrochemical engineering, electrochemical engineering, environmental engineering, and safety engineering. Its primary objective is to equip students with the knowledge and skills necessary to analyze chemical processes through calculations and develop a systematic approach to problem-solving in these fields.
Chemical engineering, as well as its related branches, requires a strong foundation in understanding chemical processes, which are at the heart of various industrial applications. The ability to analyze these processes, assess their efficiency, and determine their feasibility is crucial for future engineers. This textbook seeks to address this need by providing a structured approach to chemical process analysis, with a focus on performing the necessary calculations and applying these calculations to real-world problems.
The book is structured in such a way that it helps students build a step-by-step understanding of how to approach complex chemical processes. Each chapter introduces fundamental concepts, explains them clearly, and then shows how these principles can be applied in calculations. The explanations are followed by worked examples that guide students through the process of solving problems, demonstrating both the calculations and the underlying thought process required to solve them effectively.
In addition to these worked examples, the textbook includes numerous exercises designed to reinforce the material covered in each chapter. These exercises challenge students to apply what they have learned and to think critically about the problems at hand. By solving these exercises, students will gradually develop the ability to approach complex chemical engineering problems systematically. They will learn how to break down a problem into manageable parts, apply the relevant formulas and calculations, and arrive at a solution that is both accurate and practical.
The book’s focus on problem-solving is not limited to just chemical engineering processes. Since the text also caters to students of biotechnology, polymer technology, petrochemical engineering, electrochemical engineering, environmental engineering, and safety engineering, it offers a broad range of examples and applications that span these diverse fields. This interdisciplinary approach helps students appreciate the wide applicability of chemical engineering principles and understand how these principles can be adapted to different industries.
For students of biotechnology, the textbook covers key processes such as fermentation, enzyme kinetics, and bioreactor design, which are critical in the production of pharmaceuticals, biofuels, and other biotechnological products. The calculations associated with these processes are thoroughly explained, giving students the tools they need to assess the efficiency and scalability of biotechnological processes.
In polymer technology, students will learn how to analyze the production and properties of polymers, which are essential materials in industries ranging from packaging to aerospace. The book provides insights into polymerization reactions, molecular weight distribution, and the mechanical properties of polymers, alongside the necessary calculations to understand these processes.
For petrochemical engineering students, the textbook delves into the chemical processes involved in refining crude oil, producing fuels, and manufacturing petrochemical products such as plastics and synthetic rubber. The calculations associated with distillation, cracking, and other refining processes are explored in detail, helping students gain a solid understanding of how to optimize these operations.
Electrochemical engineering is another key focus area of the book, with chapters dedicated to the analysis of electrochemical processes such as corrosion, battery design, and electrolysis. The text provides a thorough explanation of the principles behind these processes and offers step-by-step guidance on performing the necessary calculations to analyze and optimize them.
Environmental engineering students will find valuable information on the treatment of wastewater, air pollution control, and the management of hazardous materials. The textbook emphasizes the importance of sustainability and safety in chemical process analysis, providing students with the tools they need to design processes that minimize environmental impact and ensure safety in industrial settings.
Similarly, safety engineering is a critical component of the text, as it addresses the analysis of risk and safety in chemical processes. Students will learn how to perform safety-related calculations, assess potential hazards, and develop strategies to mitigate risks in chemical plants and other industrial environments. The inclusion of safety engineering highlights the importance of protecting both workers and the environment in the design and operation of chemical processes.
Throughout the textbook, the emphasis is on developing a systematic approach to problem-solving. This means not only understanding the theoretical principles behind chemical processes but also knowing how to apply those principles in a logical and organized manner. The book encourages students to think critically about each problem, consider all the variables involved, and approach each calculation with precision.
The final goal of this textbook is to prepare students for real-world challenges in chemical engineering and related fields. By the time students complete the text, they will have developed a solid foundation in the analysis of chemical processes and a toolkit of problem-solving skills that they can apply in their careers. Whether they go on to work in biotechnology, petrochemical engineering, environmental engineering, or any other related field, the skills they acquire from this book will be invaluable.
In summary, this textbook is designed to meet the needs of undergraduate students in chemical engineering and allied disciplines by focusing on the analysis of chemical processes through calculations. It provides a comprehensive and systematic approach to problem-solving, reinforced with practical examples and exercises that prepare students to tackle real-world challenges across a wide range of industries. Whether they are analyzing a biotechnological process or designing a safer chemical plant, students will leave this course with the confidence and knowledge to succeed in their chosen field.
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Free download Stoichiometry and Process Calculations by K. V. Narayanan 2nd
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