• ECU 301: ENGINEERING MATHEMATICS X
  • ECU 303: INDUSTRIAL PRACTICAL ATTACHMENT I (12 WEEKS)
  • EEE 313: TRANSMISSION LINES AND WAVE GUIDES




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    BACHELOR OF SCIENCE ELECTRICAL ELECTRONICS ENGINEERING
    3012107720, notification-file, application-file, 1669973412 (3), 1669120852, 1671794695, 1671786083, 1671606844, 1671627717, 6-Hhg2maExef6D4dssx4y3oBHURCKfsq, AgioGbFzDYdNWpPFYeiuNAhafTAYCWxy, 1, Axborot texnologiyalari va kommunikatsiyalarini rivojlantirish v-www.hozir.org, - Raspberry Pi for Beginners Revised Edition 2014 (2011), electronics-10-00115-v3

    EEE 313: TRANSMISSION LINES AND WAVE GUIDES


    Guided Waves: Maxwell equations; differential and integral forms: Uniform plane waves; magnitude and direction; in vacuum, conductivity and non-conductivity media: Guided wave system overview; open-wire lines, coaxial lines, parallel plates and circles pipe: Waveguides; waveguide modes; Transverse electric, TM, Transverse TEM: Waveguide properties; wavelength, velocity of propagation, impendence, cut-off, polarization, reflection and refraction: Poynting theorem and power consideration: Field concepts in relation to lumped circuit’s elements. Transmission lines: Line parameters, analysis of distributed line contacts: Phase and group velocities: Dispersive and non-dispersive circuits: Concept of position angle: Analysis of current and voltage distribution along a transmission line, reflection coefficients and VSWR Lossless line equations: Lossy short-circuit line: Measurement of reflection coefficient: Smith Chart: Impendence matching using a stud: Resonant and anti-resonant lines: The quality factor of resonant and anti-resonant lines.

    ECU 301: ENGINEERING MATHEMATICS X


    Interpolation: finite difference, linear, quadratic and lagrange methods and their applications in numerical differentiation. Newton-Raphson formula for obtaining an approximate root of an equation. Numerical integration; trapezoidal and Simpson's rules, Newton-cotes and Romberg formulae, and Gaussian quadrature. Numerical solution of ordinary differential equations; Taylor's series, Euler, Runge- Kutta, Milne, predictor-corrector and extrapolation methods.

    ECU 303: INDUSTRIAL PRACTICAL ATTACHMENT I (12 WEEKS)


    This will be at the end of their third year of study and will involve relevant organizations and industries. The student will be attached to an organization and be a part of the work force. They will participate in all activities related to: Routine office work, field work, workshop work, and any other work as may be assigned by the field supervisor. The student will be required to complete 12 weeks of the attachment. The student will be required to maintain a log-book which will be issued by the centre for Career Development. This will be the basis of the assessment when the students reports back at the university.

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    EEE 313: TRANSMISSION LINES AND WAVE GUIDES

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