Syllabus — Engineering Physics-I (ICT-111T)
Official GGSIPU syllabus for the B.Tech 2026-30 batch (first year, under USICT), applicable from the academic session 2026-27.
L 3 C 3
Teachers Continuous Evaluation: 40 marks. Term-End Semester Examination: 60 marks.
Course outcomes
- Apply Newtonian mechanics principles to analyze motion and forces in engineering systems.
- Apply conservation laws of energy, momentum, and angular momentum to mechanical systems.
- Analyze oscillatory systems and explain damping, resonance, and their engineering applications.
- Explain rotational motion and rigid body dynamics using appropriate physical models.
Unit I
Physical quantities, Scalars and vectors, Vector algebra, Coordinate systems, Reference frames, Newton's laws of motion, Equations of motion, Motion in one and two dimensions, Projectile motion, Circular motion, Applications of Newton's laws. Forces in nature, Frictional forces, Constraints and constraint forces, Motion in polar coordinates, Introduction to cylindrical and spherical coordinate systems.
Unit II
Work done by a force, Kinetic and potential energy, Conservative and non-conservative forces, Potential energy functions, Relation between force and potential energy, Equipotential surfaces, Conservation of mechanical energy. Linear momentum and impulse, momentum and impulse, Conservation of momentum, Angular momentum, Angular momentum and torque, Conservation of angular momentum. Central forces, Planetary motion, Kepler's laws, Satellite motion and basic orbital applications.
Unit III
Simple harmonic motion, Differential equation of harmonic oscillator, Energy of harmonic oscillator, Mechanical oscillators, Examples of oscillatory systems. Damped oscillations, Over-damped, critically damped and under-damped systems, Forced oscillations, Resonance, Quality factor, Engineering applications of vibration and resonance. Non-inertial reference frames, Rotating frames, Centripetal and Coriolis forces, Applications of Coriolis effect.
Unit IV
Centre of mass, Motion of rigid bodies, Translational and rotational motion, Moment of inertia, Radius of gyration, Parallel and perpendicular axis theorems. Torque, Angular momentum, Rotational kinetic energy, Rolling motion, Gyroscopic effects, Introduction to three-dimensional rigid body motion and engineering applications.
Textbooks
- D. Kleppner and R. Kolenkow, An Introduction to Mechanics, 2nd ed. Cambridge, U.K.: Cambridge University Press, 2014.
References
- J. R. Taylor, Classical Mechanics. Sausalito, CA, USA: University Science Books, 2005.
- R. P. Feynman, R. B. Leighton, and M. Sands, The Feynman Lectures on Physics, Vol. I. New York, NY, USA: Basic Books,
- H. C. Ohanian and J. A. Markert, Physics for Engineers and Scientists, 3rd ed. New York, NY, USA: W. W. Norton & Company, 2007.
- R. A. Serway and J. W. Jewett, Physics for Scientists and Engineers with Modern Physics, 10th ed. Boston, MA, USA: Cengage Learning, 2018.