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You are here: Home ∼ Biology and Chemistry Books ∼ Basic Principles and Calculations in Chemical Engineering (9th Ed.) By David Himmelblau and James Rigg

Basic Principles and Calculations in Chemical Engineering (9th Ed.) By David Himmelblau and James Rigg

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Basic Principles and Calculations in Chemical Engineering (9th Ed.) By David Himmelblau and James RiggFree download Basic Principles and Calculations in Chemical Engineering (9th edition) authored by David M. Himmelblau and James B. Rigg in pdf.

This book serves as an introduction to the principles and techniques used in the field of chemical engineering as well as biological, petroleum, and environmental engineering. Although the range of subjects deemed to be in the province of chemical engineering has broadened over the last thirty years, the basic principles of this field of study remain the same.

This book presents the foundation of specific skills and information that are required for the successful undergraduate and postgraduate study of chemical engineering as well as the professional practice of chemical engineering of chemical engineering. Moreover, your remaining chemical engineering classes will rely heavily on the skills that you will develop in this course: your ability to solve abstract problems as well as the application of material and energy balances.

The study of the field of chemical engineering can be viewed as a tree with material and energy balances being the trunk and the subjects of thermodynamics, fluid flow, heat transfer, mass transfer, reactor kinetics, process control, and process design being the branches off the trunk.

From this perspective, it is easy to see the importance of mastering the material that follows. The primary objective of this book is to teach you how to systematically formulate and solve material and energy balance problems. More important, you should learn to systematically formulate and solve all types of problems using the methods presented in this text.

In addition, this text introduces you to the breadth of processes that chemical engineers work with, from the types of processes found in the refining and chemical industries to those found in bioengineering, nanoengineering, and the microelectronics industries.

While the analysis used in this book is based largely on a macroscopic scale (i.e., representing a complex system as a uniform system), your later engineering courses will teach you how to formulate microscopic material and energy balances that can be used to more completely describe these systems. In fact, you will learn in these classes that to formulate a microscopic balance you only have to apply the balances presented in this textbook to a very small volume inside the process of interest.

Contents

Part I Introduction

  • Introduction to Chemical Engineering
  • Introductory Concepts

Part II Material Balances

  • Material Balances
  • Material Balances with Chemical Reaction
  • Material Balances for Multiunit Processes

Part III Gases, Vapors, And Liquids

  • Ideal and Real Gases
  • Multiphase Equilibrium

Part IV Energy Balances

  • Energy Balances without Reaction
  • Energy Balances with Reaction

Part V Combined Material and Energy Balances

  • Humidity (Psychrometric) Charts
  • Unsteady-State Material and Energy Balances
  • Heats of Solution and Mixing
  • Liquids and Gases in Equilibrium with Solids
  • Solving Material and Energy Balances Using Process Simulators (Flow sheeting Codes)

Part VI Supplementary Material

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You may also like to download the following books for free:

  • Basic Principles and Calculations in Chemical Engineering (9th Global Ed.) By David M. Himmelblau and James B. Riggs
  • Chemical Engineering Design: Principles, Practice and Economics of Plant and Process Design (3rd Ed.) By Gavin Towler and Ray Sinnott
  • Chemical Engineering Design and Analysis: An Introduction (2nd edition) authored by T. Michael Duncan and Jeffrey A. Reimer

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