Microhydrodynamics: Principles and Selected Applications - Graduate
Microhydrodynamics: Principles and Selected Applications - Graduate
Price subject to change. Tap below for current.
Couldn't load pickup availability
In this review of Microhydrodynamics: Principles and Selected Applications the bottom line is simple: this book is a rigorous, theory-first graduate text for readers who need a firm mathematical grounding in particle motion through viscous fluids. The author focuses on principles rather than recipes, so the book excels for students and researchers who want to derive and understand governing equations and asymptotic techniques rather than follow application-specific protocols. The review highlights that end-of-chapter exercises and a clear emphasis on bounded and unbounded flow make it a durable reference for advanced coursework.
Key Features
- Theoretical focus: Concentrates on the underlying mathematical principles so readers develop a deep understanding of microhydrodynamic behavior rather than just case studies.
- Scope of flows: Covers both bounded and unbounded flow situations, providing a framework applicable to a wide variety of practical and idealized problems.
- Problem sets: Includes end-of-chapter exercises that reinforce derivations and give readers opportunities to apply concepts to concrete tasks.
- Graduate level rigor: Written for advanced students and researchers, the text assumes familiarity with continuum mechanics and mathematical methods used in fluid dynamics.
- Reference value: Emphasizes foundational results that can be reused across projects, making it useful as a long-term reference for theoretical work.
Who It's For
The book is best suited to graduate students in engineering and applied mathematics, and to researchers who require a rigorous, principled treatment of particle motions in viscous fluids. In particular, those working on theoretical problems where derivations and asymptotic analysis are central will find the material especially valuable.
Practitioners looking for quick engineering formulas, step-by-step experimental protocols, or software-focused guidance should look elsewhere; this text prioritizes conceptual clarity and mathematical development over turnkey application checklists.
Pros & Cons
Pros
- Clear emphasis on core mathematical principles that builds transferable analytical skill.
- Coverage of both bounded and unbounded flow makes the material broadly applicable across problems.
- End-of-chapter exercises support learning and encourage independent problem solving.
Cons
- Its graduate-level rigor and theoretical bent may be dense for readers seeking applied, hands-on guidance.
Specifications
| Title | Microhydrodynamics: Principles and Selected Applications |
| Author | Sangtae Kim |
| Level | Graduate textbook |
| Focus | Motion of particles in viscous fluids, bounded and unbounded flow |
| Includes | End-of-chapter exercises |
| Approach | Theoretical, mathematical and engineering principles |
Our Verdict
Microhydrodynamics is a strong value for advanced students and researchers who need a principled, mathematical treatment of particle motion in viscous flows. Its emphasis on derivation and analysis makes it an enduring reference for theory-driven work, though readers seeking quick applied recipes should consider a more practice-oriented text.
Frequently Asked Questions
Is this book suitable for introductory students?
The book is written at a graduate level and assumes prior exposure to continuum mechanics and relevant mathematical methods.
Does the text include exercises?
Yes, it contains end-of-chapter exercises intended to reinforce the theoretical development.
Will it help with practical lab work?
It provides theoretical foundations valuable for interpretation, but it does not focus on experimental protocols or step-by-step engineering recipes.
Editor's Take
Microhydrodynamics is a rigorous graduate textbook offering strong theoretical foundations and end-of-chapter exercises, ideal for students and researchers needing a principled treatment of particles in viscous flows.

Recently viewed
Recently viewed products will appear here as customers browse the store.