Course Content |
Kinematics of mass point – the Cartesian rectangular right-handed co-ordinate system, the position, the position vector, velocity, acceleration, circular motion, throws.
Dynamics of mass point – Newton’s laws, linear momentum, force, torque (moment of force), angular momentum, kinetic energy, work, power, potential energy, the principal of conservation of mechanical energy.
Dynamics of system of particles and rigid body – centre of mass, law of conservation of angular momentum, rotational kinetic energy, moment of inertia, parallel-axis theorem.
Oscillations and waves – simple harmonic motion, restoring force, period, frequency, amplitude, phase.
Electrostatic field – electric charge, Coulomb’s law, electric field, volume, surface and length charge density, Gauss’s law, applications of Gauss’s law, potential energy, electric potential, voltage, energy of electric field, capacitance.
Electric current – current, Ohm’s law, resistance, resistivity, conductivity.
Magnetic field – magnetic field, magnetic induction, Lorentz force, magnetic flux, Biot-Savart Law.
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Literature |
J. Hlaváčová, M. Kovaľaková, J Ziman, elfa, Košice: Physics I, II D. Halliday, R. Resnick, J. Walker: Physics Robert G. Brown: Introductory Physics I, Duke University Physics Department, Durham, 1993, 2007, 2013 Richard Phillips Feynman: The Feynman Lectures on Physics I, II, III |