Introduction to Process Systems Engineering: Basic Principles and Calculations with MATLAB and Python
Autor Ioannis K. Kookosen Limba Engleză Paperback – iul 2026
The material is tailored to current chemical engineering practice, making it an invaluable resource for students, researchers, and industry practitioners seeking to enhance their computational and analytical capabilities in process systems engineering. This book empowers readers to learn by doing, fostering a deeper understanding of both theoretical principles and their practical applications.
- Facilitates the learning process through the parallel development of theoretical and computational skills
- Incorporates realistic examples of solved problems
- Employs relatively simple computer programs in MATLAB and Python
- Focuses exclusively on material that is relevant and current to chemical engineering practice
Preț: 784.58 lei
Preț vechi: 1152.25 lei
-32% Precomandă
Puncte Express: 1177
Carte nepublicată încă
Doresc să fiu notificat când acest titlu va fi disponibil:
Se trimite...
Specificații
ISBN-13: 9780443454448
ISBN-10: 0443454442
Pagini: 350
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0443454442
Pagini: 350
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction
2. Basic Definitions
3. Mass Balance Equations
4. Energy Balance In Macroscopic Systems
5. Material Balances At Steady State 5.1introduction
6. Simultaneous Material And Energy Balances At Steady State
7. Calculating Properties Of Pure Components
8. Vapour-Liquid Equilibria Calculations
9. Graphical Methods Of Design
10. Dimensional Analysis And Scale Up
11. Differential Balances
12. Solving Nonlinear Algebraic And Differential Equations
13. Optimization Of Chemical Processes
14. Batch Processes
15. Phycrometry, Refrigeration And Power Production Cycles 15.1 Introduction
16. Energy And Energy Production Systems
2. Basic Definitions
3. Mass Balance Equations
4. Energy Balance In Macroscopic Systems
5. Material Balances At Steady State 5.1introduction
6. Simultaneous Material And Energy Balances At Steady State
7. Calculating Properties Of Pure Components
8. Vapour-Liquid Equilibria Calculations
9. Graphical Methods Of Design
10. Dimensional Analysis And Scale Up
11. Differential Balances
12. Solving Nonlinear Algebraic And Differential Equations
13. Optimization Of Chemical Processes
14. Batch Processes
15. Phycrometry, Refrigeration And Power Production Cycles 15.1 Introduction
16. Energy And Energy Production Systems