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Recommend books

Submitted by Anonymous (not verified) on

If you prefer to learn tensors in solid mechanics, Nye's book is recommended.


The author covers most of the physical properties in various crystal structures. Some handy tables are included in the book. However, he uses ONLY tensors to derive the properties. If you prefer to write down equations one by one, this would not be a suitable book to start.

Timoshenko's book is also recommended too. As a beginner, this book explains not only the problem, also the meaning behind it. It clearly describes the fundamental questions.

Some books

2006 American Academy of Mechanics awards - Call for nominations

Submitted by Rui Huang on

From Robert M. McMeeking (UC Santa Barbara).

The American Academy of Mechanics calls for nominations for two awards from its members:

The 2006 American Academy of Mechanics Outstanding Service Award

Preliminary nominations should consist of a one-page letter describing the outstanding service of the nominee to the Academy as well as to the profession, along with a one-page biographical sketch of the nominee, together with the names of at least three people willing to write letters of support in the event that the Awards Committee requests them.

The 2006 American Academy of Mechanics Junior Award

Junior Faculty Position Opening at Princeton University

Submitted by Jean H. Prevost on

PRINCETON UNIVERSITY. Assistant Professorship. The Department of Civil and Environmental Engineering at Princeton University has initiated a search seeking to fill a tenure-track faculty position at the Assistant Professor level in any of the following areas: materials, mechanics of solids, and structural engineering. For information about our current research activities, see our webpage, http://www.cee.princeton.edu/. The Department seeks outstanding candidates with clear potential for innovation and leadership in research and teaching. The Department is interested in candidates with the capacity to establish interdisciplinary collaborations with other schools and departments at Princeton. We particularly seek to build on our strong historical ties to our School of Architecture and to the Princeton Institute for the Science and Technology of Materials (PRISM), and to develop links with broader initiatives dealing with sustainability of the built and natural environment.

Theory of Elasticity by Timoshenko and Goodier

Submitted by Megan McCain on

Although I know it is not very original, I am recommending Timoshenko's Theory of Elasticity textbook. I find this book useful because it solves many classical solid mechanics problems without assuming the reader has a strong background in the subject (like me). When I am having difficulty with a homework problem, I turn to the index and it usually directs me to a section of the book directly related to the problem, or sometimes even the solution itself. Many parts of the book complement the course, such as the chapters "Plane Stress and Plane Strain" and "Analysis of Stress and Strain in 3 Dimensions."

The book starts with basic definitions and derivations of stress and strain, then applies these equations to solve problems in different coordinate systems. It also includes chapters on more specific topics, like torsion and thermal stress.

Textbook Recommendation

Submitted by Michael T. Petralia on

It's a bit hard to recommend a text, when I have yet to find one that I really love. Currently I am working from Advanced Strength and Applied Elasticity by A.C. Ugural & S.K. Fenster. It contains all of the relevant information, though I find the explanations of the concepts a bit slim. So far is has covered all of topics we covered in class. The first four chapters seem the most relevent. These are titled Analysis of Stress; Strain and Stress-Strain Relations; Two-Dimensional Problems in Elasticity; and Failure Criteria. The rest of the text deals with more specific topics (torsion, bending, plastic behavior, etc.).

Here is a link to the Amazon page, where the book gets mediocore reviews.

Persistent step-flow growth of strained films on vicinal substrates

Submitted by Wei Hong on

We propose a model of persistent step flow, emphasizing dominant kinetic processes and strain effects. Within this model, we construct a morphological phase diagram, delineating a regime of step flow from regimes of step bunching and island formation. In particular, we predict the existence of concurrent step bunching and island formation, a new growth mode that competes with step flow for phase space, and show that the deposition flux and temperature must be chosen within a window in order to achieve persistent step flow. The model rationalizes the diverse growth modes observed in pulsed laser deposition of SrRuO3 on SrTiO3

 Physical Review Letters 95, 095501 (2005)

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