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Lecturer Dr. Roitberg Vladislav

Courses

  • Physics - Mechanics (90903)
  • Course summary:

    Abstract:

    Vectors in 3D, kinematics in 3D,Newton laws, time dependent,

    space dependent and velocity dependent forces, work and energy, conservative and dissipative forces,

    momentum, center of mass theorem, collisions,

    circular motion and dynamics, angular momentum, gravity, harmonic oscillations,

    introduction to rigid body dynamics.
  • Waves (90929)
  • Course summary:

    Abstract:

    wave concept, general wave equation, waves in a string, superposition,

    general solutions, traveling waves, harmonic waves, energy density, power,

    driving forces, impedance, reflection and transmission at a junction,

    standing waves, representation of standing waves in a finite string by Fourier series,

    voltage /current waves in a transmission line,

     

    sound waves in 3D, interference of sound waves,

    planar waves, energy density, energy flux
  • Physics1 For Eng. and Management (90937)
  • Course summary:

    Abstract:

    Kinematics in 3D, Newton’s laws, time dependent, space dependent and velocity dependent forces,

    work and energy, conservative and dissipative forces,

    momentum, collisions, circular motion and dynamics,

    angular momentum, gravity, harmonic oscillations.
  • Physics2 For Eng. and Management (90939)
  • Course summary:

    Abstract:

    Fundamental concepts, electric fields, Gauss’s Law, potential, conductors and insulators, capacitors and capacitance, batteries, currents and resistance, magnetic fields, magnetic force on charges and currents, sources of magnetism (Biot-Savart and Ampere’s laws), electromagnetic induction (Faraday’s law).
  • Waves Theory for Medical Engineering (90948)
  • Course summary:

    Abstract:

    Wave concept, waves in a string, superposition, general solutions,

    traveling waves, harmonic waves, standing waves, representation of standing waves in a finite string by Fourier series, energy density, power, reflection and transmission at a junction, sound waves in 3D, intensity, physical parameters of the hearing system,

    propagation of sound waves in biological tissues, Doppler effect, interference.

    Maxwell equations. Electromagnetic waves: plan waves, energy density, energy flux, radiation pressure, polarization