A Textbook of Engineering Mechanics |
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Contents
Fundamentals of Engineering Mechanics 123 | 1 |
Coplanar Collinear and Concurrent Forces 2442 | 24 |
Chap Pages | 26 |
Coplanar Parallel Forces 4360 | 43 |
Conditions of Equilibrium 6191 | 61 |
Chap Pages | 72 |
Support Reactions 92113 | 92 |
Analysis of Perfect Frames 114153 | 114 |
Chap Pages | 373 |
Linear Motion 381413 | 381 |
Chap Pages | 425 |
Projectiles 441470 | 441 |
Laws of Motion 471543 | 471 |
Chap Pages | 493 |
Body is Lying on a Horizontal Surface and Other is Hanging Free | 499 |
Simple Harmonic Motion and Mechanical Vibrations 544579 | 544 |
Chap Pages | 136 |
Centre of Gravity and Moment of Inertia 154194 | 154 |
Friction 195238 | 195 |
Chap Pages | 197 |
Lifting Machines 239289 | 239 |
Virtual Work 290331 | 290 |
Belts Ropes and Chain Drives 332378 | 332 |
Chap Pages | 566 |
Collision of Elastic Bodies 580605 | 580 |
Work Power and Energy 606637 | 606 |
Chap Pages | 615 |
Forces in Space 638657 | 638 |
658 | |
Common terms and phrases
acceleration action AMIE angle angular velocity applied axis ball beam belt block body bullet Calculate centre co-efficient of friction component Consider constant Determine diagram diameter direction distance draw drive efficiency effort energy equal equilibrium Final Find fixed force of friction forces acting friction given by equation Hence horizontal impact inclined plane inertia Initial velocity joint known ladder length lift load machine magnitude mass maximum method moments momentum motion moving normal obtained opposite parallel passing position Problem projection pulley Radius ratio reaction represented resistance Resolving respectively rest resultant force roller rotation shaft shown in Fig shows side smooth speed string Substituting the value surface Take taken tension unit upward vector vertical Virtual displacement weight zero