Guia docente 2020_21
Escola de Enxeñaría de Telecomunicación
Degree in Telecommunications Technologies Engineering
 Subjects
  Physics: Fields and Waves
   Contents
Topic Sub-topic
1. Vector and differential analysis of fields
1.1 Scalar and vector fields
1.2 Systems of coordinates in space
1.3 Vector Algebra
1.4 Integral operators
1.5 Differential operators
1.6 Properties of operators
2. Electrostatics
2.1 Electric charge
2.2 Electric field and its properties
2.3 Electric potential
2.4 Electric permitivity
2.5 Gauss law
2.6 Equations of Poisson and Laplace. Capacitance
3. Magnetostatics
3.1 Electric current
3.2 Magnetic field and its properties
3.3 Magnetic permeability
3.4 Ampere's Law
3.5 Self-induction
4. Maxwell model
4.1. Maxwell's equations in integral form
4.2. Differential form of Maxwell's equations
4.3. Boundary conditions
4.4. Harmonic time variation and phasor notation
4.5. Energy and power density
5. Fundamentals and characteristics of waves
5.1 Wave equation in the phasor domain
5.2 Solutions in rectangular coordinates
5.3 Wave parameters: frequency, wavelength, propagation constant and impedance of the medium.
5.4 Poynting vector and average power density
5.5 Progressive waves on lossy and lossless media
5.6 Polarization
6. Waves in the presence of obstacles
6.1 Wave incidence on conductors
6.2 Incidence on discontinuity between two media
6.3 Incident, reflected and transmitted wave
6.4 Standing wave diagram
6.5 Power transmission
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