Engineering PhysicsKrishna Prakashan Media |
Contenido
Units Dimensions and Vectors | 1-1 |
Subtraction of Vectors | 1-22 |
Multiplication of a Vector by a Scalar | 1-28 |
Solved Numerical Examples | 1-51 |
Multiple Choice Questions 1 | 1-90 |
Answers to Exercises 1 | 1-97 |
Force Motion and Friction 1 101 1 140 | 1-101 |
Multiple Choice Questions 1 | 1-131 |
Answers to Exercises 1 | 1-235 |
Multiple Choice Questions 1 | 1-294 |
Answers to Exercises 1 | 1-302 |
Multiple Choice Question 1 | 1-347 |
Answers to Exercises 1 | 1-353 |
Velocity Gradient and Coefficient of Viscosity 1 | 1-357 |
Stokes Law of Terminal Velocity 1 | 1-372 |
Viscosity of GasesMeyers Formula 1 | 1-379 |
Answers to Numericals 1 | 1-137 |
38 | 1-155 |
Multiple Choice Questions 1 | 1-178 |
Answers to Exercises 1 | 1-184 |
Multiple Choice Questions 1 | 1-229 |
Pressure Difference Across a Spherical Surface 1 | 1-385 |
Shape of Liquid Surface in a Capillary Tube 1 | 1-391 |
Effect of Temperature on Surface Tension 1 | 1-398 |
Answers to Exercises 1 | 1-406 |
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Términos y frases comunes
a₁ acceleration due angle angular momentum angular velocity axis passing ball block body of mass Calculate capillary tube centre of mass centripetal force circular coefficient component constant cylinder density diameter direction disc displacement distance due to gravity earth elastic equal equation equilibrium Example F₁ F₂ force acting force F frictional force height Hence horizontal inclined plane inertia Joules kinetic energy km/hr length linear liquid m/s² m/sec m₁ m₂ m₂g magnitude modulus moment of inertia motion moving MR² mv² N/m² Newton's Newton's second law orbit P₁ particle pendulum perpendicular Poisson's ratio position potential energy pressure r₁ radius rotation satellite shown in fig Solution speed sphere strain string Substituting the value surface tension T₁ T₂ torque unit V₁ v₂ vector vertical viscosity wire Young's modulus zero