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Scilab Textbook Companion Project
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Category
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Aeronautical/Aerospace Engineering/Civil Engineering/Industrial Engineering/Mechanical Engineering/Nuclear Engineering/Ocean Engineering/Production Engineering
Computer Science/Information Technology
Chemical Engineering
Chemistry
Electrical Engineering/Electrical & Electronics Engineering/Electronics & Telecommunication Engineering/Instrumentation & Control Engineering
Material Sciences/Metallurgy
Mathematics & Statistics
Physics
Economics
Sub Category
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Chemical Processes
Chemical Reactions
Energy
Heat/Mass Transfer
Instrumentation and Measurement
Thermodynamics
Process Control
Fluid Mechanics
Title of the book
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Stoichiometry And Process Calculations (Written by K. V. Narayanan And B. Lakshmikutty)
Stoichiometry (Written by B. I. Bhatt And S. B. Thakore)
Basic Principles And Calculations In Chemical Engineering (Written by D. M. Himmelblau And J. B. Riggs)
Introduction To Chemical Engineering (Written by S. K. Ghoshal, S. K. Sanyal And S. Datta)
Introduction To Numerical Methods In Chemical Engineering (Written by P. Ahuja)
About the Book
About the Contributor
Author:
D. M. Himmelblau And J. B. Riggs
Title of the Book:
Basic Principles And Calculations In Chemical Engineering
Publisher:
PHI Learning Private Limited, New Delhi
Year:
2004
Edition:
7
ISBN:
978-81-203-3839-5
Contributor Name:
Amarjeet Kumar Singh, B.Tech, Chemical Engineering, IT BHU
College Teacher:
Prakash Kotecha
Reviewer:
Scilab TBC Team
No part of any book is reproduced through these links. These links only contain the Scilab code for the solved examples in the book.
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(Download the Scilab codes for all the solved examples)
Download PDF
(Download the PDF file containing Scilab codes for all the solved examples)
The pdf only contains the Scilab code for the solved examples in the book. No part of the book is reproduced in the pdf.
Title of the chapter
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1. Dimensions units and their conversion
2. Moles Density and Concentration
3. Choosing a Basis
4. Temperature
5. Pressure
6. Introduction to Material Balances
7. A General Strategy for Solving Material Balance Problems
8. Solving Material Balance Problems for Single Units without Reaction
9. The Chemical Reaction Equation and Stoichiometry
10. Material Balances for Processes Involving Reaction
11. Material Balance Problems involving Multiple Units
12. Recycle Bypass Purge and the Industrial Application of Material Balance
13. Ideal Gases
14. Real Gases Compressiblity
15. Real Gases Equations of State
16. Single Component Two Phase Systems
17. Two Phase Gas Liquid Systems Saturation Condensation and Vaporization
18. Two Phase Gas Liquid Systems Partial Saturation and Humidity
19. The Phase Rule and Vapor Liquid Equilibria
20. Liquid and Gases in Equilibrium with Solids
21. Energy Terminology Concepts and Units
22. Introduction to Energy Balances for Process without Reaction
23. Calculation of Enthalpy Changes
24. Applications of Energy Balances in the Absence of Chemical Reactions
25. Energy Balances How to Account for Chemical Reaction
26. Energy Balances that include the Effects of Chemical Reaction
27. Ideal Processes Efficiency and the Mechanical Energy Balance
28. Heats of Solution and Mixing
29. Humidity Charts and their Uses
Example No. (Caption):
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