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Shigley's Mechanical Engineering Design isintended for students
beginning the study of mechanical engineering design.Students will
find that the text inherently directs them into familiarity
withboth the basics of design decisions and the standards of
industrial components.It combines the straightforward focus on
fundamentals that instructors havecome to expect with a modern
emphasis on design and new applications. Thisedition maintains the
well-designed approach that has made this book thestandard in
machine design for nearly 50 years. McGraw Hill Education's
Connectis also available as an optional add on item. Connect is the
only integratedlearning system that empowers students by
continuously adapting to deliverprecisely what they need when they
need it how they need it so that class timeis more effective.
Connect allows the professor to assign homework quizzes andtests
easily and automatically grades and records the scores of the
student'swork. Problems are randomized to prevent sharing of
answers an may also have a"multi-step solution" which helps move
the students' learning alongif they experience difficulty.
Publisher's Note: Products purchased from Third Party sellers are
not guaranteed by the publisher for quality, authenticity, or
access to any online entitlements included with the product. The
industry-standard resource for stress and strain formulas fully
updated for the latest advances and restructured for ease of use
This newly designed and thoroughly revised guide contains accurate
and thorough tabulated formulations that can be applied to the
stress analysis of a comprehensive range of structural components.
Roark's Formulas for Stress and Strain, Ninth Edition has been
reorganized into a user-friendly format that makes it easy to
access and apply the information. The book explains all of the
formulas and analyses needed by designers and engineers for
mechanical system design. You will get a solid grounding in the
theory behind each formula along with real-world applications that
cover a wide range of materials. Coverage includes: * The behavior
of bodies under stress * Analytical, numerical, and experimental
methods * Tension, compression, shear, and combined stress * Beams
and curved beams * Torsion, flat plates, and columns * Shells of
revolution, pressure vessels, and pipes * Bodies under direct
pressure and shear stress * Elastic stability * Dynamic and
temperature stresses * Stress concentration * Fatigue and fracture
* Stresses in fasteners and joints * Composite materials and solid
biomechanics
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