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ISBN 10: 0070681813
ISBN 13: 9780070681811
Author: K. L. Kumar; Veenu Kumar
Engineering Mechanics by K. L. Kumar is a comprehensive and widely used textbook tailored for undergraduate engineering students. The book presents a systematic treatment of statics and dynamics, essential branches of mechanics, using a combination of theoretical exposition, detailed illustrations, and solved problems.
It emphasizes:
Fundamental concepts of forces, moments, equilibrium, kinematics, and kinetics.
Extensive use of free-body diagrams and vector analysis.
Applications of Newton’s laws, D’Alembert’s principle, work-energy methods, and impulse-momentum approaches.
Thorough exploration of particles and rigid body dynamics.
Use of SI units throughout the text, consistent with modern academic and industrial standards.
Part 1: Foundations and Principles
Ethics and Moral Development
Ethics and Society
Ethics and Moral Reasoning
Part 2: Communication Scenarios
Truth and Honesty in Media Communications
The Media and Privacy: A Delicate Balance
Confidentiality and the Public Interest
Conflicts of Interest
Economic Pressures and Social Responsibility
The Media and Antisocial Behavior
Morally Offensive Content: Freedom and Responsibility
Media Content and Juveniles: Special Ethical Concerns
Media Practitioners and Social Justice
Stereotypes in Media Communications
The Many Worlds of Drink in Europe and America
Puritans in Taverns: Law and Popular Culture in Colonial Massachusetts
Social Drinking in Old Regime Paris
“Parliaments of the People”: The Political Culture of Cafés in the Early Third Republic
The Tavern and Politics in the German Labor Movement
Decay from Within: The Inevitable Doom of the American Saloon
Student Drinking in the Third Reich: Academic Tradition and the Nazi Revolution
Politics, Ideology, and Power
Against the Flowing Tide: Whiskey and Temperance in the Making of Modern Ireland
Chapter One: Healing Magic and Udug-hul Incantations
History of the Present Text Edition
History of the Text of Udug-hul / Utukkū Lemnūtu
UH Incipits and Manuscripts
Ritual Content of UH Incantations
Chapter Two: Survey of Mesopotamian Magic
Legitimacy
Formal vs. Folk Magic
Magic as Theory
Incantation Prayer, Individual Voice
Magic and Divination
Chapter Three: Udug-hul as Healing Arts
Exorcist as Diagnostician
Assyrian Court Memorandum
Conclusion
Chapter Four: Text Score of Udug-hul
Udug-hul Tablets 1–16
Marduk’s Address to the Demons
Chapter Five
Collations and Corrections of Forerunners to Udug-hul
Appendix Day 630
Engineering Mechanics: Statics Overview
Introduction to Engineering and Mechanics
Engineering and “Engineering Sciences”
Mechanics and Its Relevance to Engineering
Different Formulations of Mechanics
Foundational Concepts
Frames of Reference
Idealization of Bodies
External and Internal Forces
Principle of Transmissibility of Force
Concept of Free-Body Diagram
Laws of Motion
Law of Gravitation – Weight of a Body
Concept Review Questions
Multiple-Choice Questions
Review of SI Units and Vectors
SI Units and Base Units
SI Derived Units
Units of Common Physical Quantities
Multiples and Submultiples
Conversion Factors
Useful Constants
Properties of Water, Mercury, and Air
Test Your SI Power
Vectors and Operations
Numbers, Scalars and Vectors
Addition and Resolution of Vectors
Products and Derivatives
Gradient, Divergence, Curl
Velocity and Acceleration
Other Vector Quantities
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Forces and Moments
Force and Moment Concepts
Force Fields: Linear, Plane, and Spatial
Distributed Force Fields
Force System Acting on a Body
Resultants and Principles
Gravitational and Hydrostatic Forces
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Equilibrium and Applications
Equilibrium under Coplanar and Spatial Forces
Forces in Trusses and Frames
Shear Force and Bending Moment in Beams
Friction and Lifting Machines
Moment of Inertia
Human Experiences: Gyroscopes and Pendulums
Elastic Impacts
Equilibrium in Mechanics
Free-Body Diagrams
Reactions by Supports
Equilibrium of Particles and Rigid Bodies
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Structures and Beams
Types of Structures
Internal Forces: Tension and Compression
Methods of Analysis: Joints, Sections, Tension Coefficients
Shear Force and Bending Moment
Loading and Bending Relationships
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Friction and Machines
Friction and Impending Motion
Rolling Resistance
Cylinders, Band Brakes, Screw Jacks
Disc and Bearing Friction
Machines: Input and Output
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Centroids and Centres
Centroid, Centre of Mass, Centre of Gravity
Composite Lengths, Areas, and Volumes
Pappus-Guldinus Theorems
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Kinematics of Particles
Kinematic Concepts
Rectilinear and Curvilinear Motion
Motion in Different Coordinate Systems
Motion in Moving Frames
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Kinetics of Particles
Equations of Motion
D’Alembert Principle
Work, Energy, and Power
Impulse and Momentum
Conservation Laws
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Kinematics of Rigid Bodies
Types of Motion
Fixed-Axis Rotation
Rigid-Body Fluid Motion
Instantaneous Centres
Relative Velocity and Acceleration
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Inertia and Rigid-Body Dynamics
Inertial Concepts: Area and Mass
Parallel-Axis Theorems
Composite Sections and Bodies
Principal Axes and Moments of Inertia
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Rigid-Body Motion
Translation and Rotation
Plane Motion and Work-Energy Formulation
Impulse-Momentum for Plane Motion
General Motion and Gyroscopic Action
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Impact and Central Force Motion
Types of Impact and Restitution
Central Collisions and Satellite Motion
Kepler’s Laws
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Virtual Work and Energy Methods
Virtual Work
Principle of Virtual Work
Principle of Potential Energy
Generalized Coordinates
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Mechanical Vibrations
Mechanical Systems and Dynamics
Free Vibrations: Linear and Angular
Pendulum Motions
Concept Review Questions
Tutorial Problems
Multiple-Choice Questions
Appendices
Properties of Plane Figures
Properties of Solid Bodies
Hints to Tutorial Problems
Index
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Tags: Kumar, Veenu Kumar, Engineering mechanics