Specifications
book-author | Ferdinand P. Beer ; E. Russell Johnston Jr ; David F. Mazurek |
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file-type | |
isbn10 | 0077687302 |
isbn13 | 9780077687304 |
language | English |
publisher | McGraw-Hill Education |
Book Description
“Vector Mechanics for Engineers: Statics, 11th Edition” by Ferdinand Beer, E. Johnston, and David Mazurek stands as a definitive resource for students and professionals delving into the principles of statics within the field of engineering. Authored by a team of experienced and respected educators, this 11th edition maintains the high standards set by its predecessors, providing a thorough and contemporary exploration of static equilibrium and the fundamental principles governing the behavior of structures.
The book is crafted with a pedagogical approach, ensuring that complex concepts are presented in a clear and accessible manner. Ferdinand Beer, E. Johnston, and David Mazurek leverage their expertise to guide readers through the theoretical foundations of statics, imparting a solid understanding of key engineering principles. The comprehensive nature of the content makes it an ideal resource for engineering students at various levels, from introductory courses to more advanced studies.
Key features of the 11th edition include updated examples and applications that reflect real-world engineering scenarios. The authors integrate practical insights with theoretical discussions, fostering a holistic comprehension of statics concepts. The inclusion of illustrative diagrams, exercises, and problem-solving strategies further enhances the learning experience, allowing readers to apply theoretical knowledge to practical engineering challenges.
Whether used as a primary textbook in engineering courses or as a reference for professionals in the field, “Vector Mechanics for Engineers: Statics, 11th Edition” serves as an invaluable tool for mastering the principles of statics. With its commitment to clarity, accuracy, and relevance, this edition continues the tradition of excellence established by its predecessors, solidifying its place as a go-to resource in the study of engineering statics.
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