Products related to Mechanics:
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Engineering Mechanics 2 : Mechanics of Materials
Now in its second English edition, Mechanics of Materials is the second volume of a three-volume textbook series on Engineering Mechanics.It was written with the intention of presenting to engineering students the basic concepts and principles of mechanics in as simple a form as the subject allows.A second objective of this book is to guide the students in their efforts to solve problems in mechanics in a systematic manner.The simple approach to the theory of mechanics allows for the different educational backgrounds of the students.Another aim of this book is to provide engineering students as well as practising engineers with a basis to help them bridge the gaps between undergraduate studies, advanced courses on mechanics and practical engineering problems.The book contains numerous examples and their solutions.Emphasis is placed upon student participation in solving the problems.The new edition is fully revised and supplemented by additional examples.The contents of the book correspond to the topics normally covered in courses on basic engineering mechanics at universities and colleges. Volume 1 deals with Statics and Volume 3 treats Particle Dynamics and Rigid Body Dynamics.Separate books with exercises and well elaborated solutions are available.
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Elementary engineering fracture mechanics
When asked to start teaching a course on engineering fracture mechanics, I realized that a concise textbook, giving a general oversight of the field, did not exist.The explanation is undoubtedly that the subject is still in a stage of early development, and that the methodologies have still a very limited applicability.It is not possible to give rules for general application of fracture mechanics concepts.Yet our comprehension of cracking and fracture beha viour of materials and structures is steadily increasing.Further developments may be expected in the not too distant future, enabling useful prediction of fracture safety and fracture characteristics on the basis of advanced fracture mechanics procedures.The user of such advanced procedures mlst have a general understanding of the elementary concepts, which are provided by this volume.Emphasis was placed on the practical application of fracture mechanics, but it was aimed to treat the subject in a way that may interest both metallurgists and engineers.For the latter, some general knowledge of fracture mechanisms and fracture criteria is indispensable for an apprecia tion of the limita tions of fracture mechanics.Therefore a general discussion is provided on fracture mechanisms, fracture criteria, and other metal lurgical aspects, without going into much detail.Numerous references are provided to enable a more detailed study of these subjects which are still in a stage of speculative treatment.
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Chemical Engineering Fluid Mechanics
This book provides readers with the most current, accurate, and practical fluid mechanics related applications that the practicing BS level engineer needs today in the chemical and related industries, in addition to a fundamental understanding of these applications based upon sound fundamental basic scientific principles.The emphasis remains on problem solving, and the new edition includes many more examples.
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Engineering Mechanics 3: Dynamics
This book follows the classical division of engineering mechanics as it is taught at technical colleges and universities and is dedicated to dynamics, i.e. the consideration of movements of bodies under forces.The aim of this book is to provide students with a clear introduction to dynamics and to enable them to formulate and solve engineering problems independently.The book provides a number of examples for this purpose.This book is aimed at students at technical colleges and universities of mechanical engineering, civil engineering, mechanics and all other degree programmes in which dynamics plays a role.
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What are internal forces in statics and engineering mechanics?
Internal forces in statics and engineering mechanics are the forces that act within a structure or a body. These forces are typically caused by the external loads applied to the structure and are distributed throughout the material. Internal forces include axial forces, shear forces, and bending moments, which are essential for analyzing the stability and strength of structures. Understanding internal forces is crucial for designing structures that can withstand the applied loads and ensuring their structural integrity.
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Is technical mechanics a challenge in mechanical engineering studies?
Yes, technical mechanics can be a challenge in mechanical engineering studies. Technical mechanics involves the study of forces, motion, and energy, and it forms the foundation for many other areas of mechanical engineering. Understanding and applying concepts such as statics, dynamics, and kinematics can be difficult for some students. However, with dedication and practice, students can overcome these challenges and develop a strong understanding of technical mechanics, which is essential for success in the field of mechanical engineering.
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Is there a natural science degree program without mechanics?
Yes, there are natural science degree programs that do not include mechanics as a core component. For example, programs in biology, environmental science, ecology, or marine biology may not have a strong emphasis on mechanics. These programs focus more on living organisms, ecosystems, and environmental processes rather than the physical laws governing motion and forces. Students interested in natural sciences but not mechanics can explore these alternative degree programs.
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Where do industrial mechanics or machining mechanics earn more?
Industrial mechanics or machining mechanics typically earn more in industries that require highly specialized skills and experience, such as aerospace, automotive manufacturing, or oil and gas. These industries often offer higher salaries to attract and retain skilled mechanics due to the complexity and precision of the work involved. Additionally, mechanics who are willing to work in remote locations or on offshore rigs may also command higher salaries due to the demand for their expertise in those settings.
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Beastly Science: Mammal Mechanics
This mind-blowing science series explores the secret powers of different animal species and how today's scientists are using the process of `biomimicry' to apply these animal abilities to the human world and revolutionise our lives.In Mammal Mechanics, fact-packed, bite-sized text and quirky, cartoon-style illustrations explore the scientific innovations inspired by everything from porcupine quills to bat echolocation.Multiple entry points, including text, side panels, captions and fact boxes make the reading experience fun and accessible for young readers.Be prepared to be flabbergasted!
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Engineering Mechanics: Dynamics, SI Units
Engineering Mechanics: Dynamics excels in providing a clear and thorough presentation of the theory and application of engineering mechanics.It empowers you to succeed by drawing upon Professor Hibbeler's decades of everyday classroom experience and his knowledge of how students learn.The text is shaped by the comments and suggestions of hundreds of reviewers in the teaching profession, as well as many of the author's students. The 15th Edition in SI units features a large variety of problems, about 30% which are new, which involve practical applications to different fields of engineering. If you are not using Mastering Engineering, you can purchase access to the videos that accompany this title here.
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Engineering Fluid Mechanics, International Adaptation
Engineering Fluid Mechanics, 12th edition, guides students from theory to application, emphasizing skills like critical thinking, problem solving and modeling to apply fluid mechanics concepts to solve real-world engineering problems.The essential concepts are presented in a clear and concise format, while abundant illustrations, charts, diagrams, and examples illustrate complex topics and highlight the physical reality of fluid dynamics applications.The text emphasizes on technical derivations, presenting derivations of main equation in a step-by-step manner and explaining their holistic meaning in words.The Wales-Wood Model is used throughout the text to solve numerous example problems.This International Adaptation comes with some updates that enhance and expand certain concepts and some organizational changes.The edition provides a wide variety of new and updated solved problems, real-world engineering examples, and end-of-chapter homework problems and has been completely updated to use SI units.The text, though written from civil engineering perspective, adopts an interdisciplinary approach which makes it suitable for engineering students of all majors who are taking a first or second course in fluid mechanics.
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Mechanics Of Engineering Structures, The
Engineering structures considered include bars, columns, struts, tubes, vessels, beams, springs and frames.The loadings imposed upon them are, typically, tension, compression and shear, bending, torsion and pressure, separately and in combination.The mechanics of such structures examine the manner in which they each bear their respective loading in a safe predictable way.This aids design considerations upon choice of material and its physical shape when seeking, say, a safe design with low weight.The presentation of chapters is intended to guide the reader from a basic to more advanced understanding of common engineering structures.Thus, the consideration of stress and strain under elastic and plastic conditions is required for a full understanding of a structure that may bend, twist and buckle as it is deflected by its loading.The approach adopted is to intersperse theory with examples and exercises that emphasise practical application.Standard analytical techniques including stress transformation, energy methods and yield criteria precede a final chapter on finite element analysis.Worked examples and exercises have been devised and compiled by the author to support the topics within each chapter.Some have been derived, with a conversion to SI units, from past examination papers set by institutions with which the author has been associated, namely: Brunel, Kingston and Surrey Universities and the Council of Engineering Institutions.The contents should serve most courses in mechanical, civil, aeronautical and materials engineering.
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Is the technical mechanics - dynamics/kinematics in mechanical engineering studies more difficult than the technical mechanics - strength of materials?
The difficulty of technical mechanics in mechanical engineering studies depends on the individual's strengths and interests. Dynamics/kinematics focuses on the motion and forces of objects, which can be challenging for some students due to its abstract nature and complex mathematical calculations. On the other hand, strength of materials deals with the behavior of materials under different types of forces, which may be more intuitive for some students. Ultimately, the difficulty of each subject is subjective and varies from person to person.
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What is the aptitude test for process mechanics for rubber technology?
The aptitude test for process mechanics for rubber technology is designed to assess an individual's knowledge and skills in the field of rubber technology. It may include questions related to rubber processing techniques, machinery operation, quality control, and safety procedures. The test may also evaluate problem-solving abilities, mechanical aptitude, and attention to detail, all of which are important for success in this role. Additionally, the test may assess the candidate's understanding of chemical processes and materials used in rubber production.
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What is the requirement of mechanical engineering studies regarding technical mechanics?
Mechanical engineering studies require a strong foundation in technical mechanics as it forms the basis of understanding how forces and motion interact in various systems. Students need to grasp concepts such as statics, dynamics, kinematics, and kinetics to analyze and design mechanical systems effectively. Proficiency in technical mechanics is essential for solving complex engineering problems, designing machines, and ensuring the safety and efficiency of mechanical systems. Mastery of technical mechanics also enables mechanical engineers to predict and control the behavior of materials and structures under different conditions.
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Is technical mechanics correct?
Yes, technical mechanics is a correct and well-established field of study that deals with the behavior of physical systems and the application of mathematical principles to analyze and solve problems related to motion, force, energy, and deformation. It is a fundamental aspect of engineering and physics, and its principles are used in a wide range of practical applications, from designing machines and structures to understanding the behavior of natural phenomena. Technical mechanics provides a solid foundation for understanding and predicting the behavior of physical systems, making it an essential and correct discipline in the study of science and engineering.
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