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Modeling in transport phenomena a conceptual approach

Modeling in Transport Phenomena, Second Edition presents and clearly explains with example problems the basic concepts and their applications to fluid flow, heat transfer, mass transfer, chemical reaction engineering and thermodynamics. A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. Systematic derivations of the equations and the physical significance of each term are given in detail, for students to easily understand and follow up the material. There is a strong incentive in science and engineering to understand why a phenomenon behaves the way it does. For this purpose, a complicated real-life problem is transformed into a mathematically tractable problem while preserving the essential features of it. Such a process, known as mathematical modeling, requires understanding of the basic concepts. This book teaches students these basic concepts and shows the similarities between them. Answers to all problems are provided allowing students to check their solutions. Emphasis is on how to get the model equation representing a physical phenomenon and not on exploiting various numerical techniques to solve mathematical equations. * A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. * Systematic derivations of the equations as well as the physical significance of each term are given in detail * Many more problems and examples are given than in the first edition - answers provided.

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  • "Modeling in Transport Phenomena, Second Edition presents and clearly explains with example problems the basic concepts and their applications to fluid flow, heat transfer, mass transfer, chemical reaction engineering and thermodynamics. A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. Systematic derivations of the equations and the physical significance of each term are given in detail, for students to easily understand and follow up the material. There is a strong incentive in science and engineering to understand why a phenomenon behaves the way it does. For this purpose, a complicated real-life problem is transformed into a mathematically tractable problem while preserving the essential features of it. Such a process, known as mathematical modeling, requires understanding of the basic concepts. This book teaches students these basic concepts and shows the similarities between them. Answers to all problems are provided allowing students to check their solutions. Emphasis is on how to get the model equation representing a physical phenomenon and not on exploiting various numerical techniques to solve mathematical equations. * A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. * Systematic derivations of the equations as well as the physical significance of each term are given in detail * Many more problems and examples are given than in the first edition - answers provided."@en
  • "Modeling in Transport Phenomena, Second Edition presents and clearly explains with example problems the basic concepts and their applications to fluid flow, heat transfer, mass transfer, chemical reaction engineering and thermodynamics. A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. Systematic derivations of the equations and the physical significance of each term are given in detail, for students to easily understand and follow up the material. There is a strong incentive in science and engineering to understand why a phenomenon behaves the way it does. For this purpose, a complicated real-life problem is transformed into a mathematically tractable problem while preserving the essential features of it. Such a process, known as mathematical modeling, requires understanding of the basic concepts. This book teaches students these basic concepts and shows the similarities between them. Answers to all problems are provided allowing students to check their solutions. Emphasis is on how to get the model equation representing a physical phenomenon and not on exploiting various numerical techniques to solve mathematical equations. * A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. * Systematic derivations of the equations as well as the physical significance of each term are given in detail * Many more problems and examples are given than in the first edition - answers provided."
  • "Modelling in Transport Phenomena is intended as an introduction to Transport Phenomena courses. Although it is written for students majoring in chemical engineering, it can also be used as a reference or a supplementary text in environmental, mechanical, petroleum and civil engineering courses. It has been designed in order to help students understand basic concepts that are usually difficult to grasp."@en
  • "Modeling in Transport Phenomena, Second Editionpresents and clearly explains with example problems the basic concepts and their applications to fluid flow, heat transfer, mass transfer, chemical reaction engineering and thermodynamics. A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. Systematic derivations of the equations and the physical significance of each term are given in detail, for students to easily understand and follow up the material. There is a strong incentive in science and engineering to understand why a phenomenon behaves the way it does. For this purpose, a complicated real-life problem is transformed into a mathematically tractable problem while preserving the essential features of it. Such a process, known as mathematical modeling, requires understanding of the basic concepts. This book teaches students these basic concepts and shows the similarities between them. Answers to all problems are provided allowing students to check their solutions. Emphasis is on how to get the model equation representing a physical phenomenon and not on exploiting various numerical techniques to solve mathematical equations. * A balanced approach is presented between analysis and synthesis, students will understand how to use the solution in engineering analysis. * Systematic derivations of the equations as well as the physical significance of each term are given in detail * Many more problems and examples are given than in the first edition - answers provided"
  • "Modelling in Transport Phenomena."
  • "Presents and explains with example problems the basic concepts and their applications to fluid flow, heat transfer, mass transfer, chemical reaction engineering and thermodynamics. Suitable for students, this book also presents balanced approach between analysis and synthesis."@en

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  • "Electronic books"
  • "Electronic books"@en
  • "Llibres electrònics"

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  • "Modelling in Transport Phenomena, Second Edition"
  • "Modeling in transport phenomena a conceptual approach"
  • "Modeling in transport phenomena a conceptual approach"@en
  • "Modelling in Transport Phenomena"
  • "Modelling in transport phenomena : A conceptual approach"
  • "Modeling in Transport Phenomena a Conceptual Approach"@en
  • "Modeling in transport phenomena : a conceptual approach"
  • "Modelling in transport phenomena : a conceptual approach"
  • "Modelling in transport phenomena a conceptual approach"@en
  • "Modelling in transport phenomena a conceptual approach"