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    https://sophisticatedspectra.com/article/drosia-serenity-a-modern-oasis-in-the-heart-of-larnaca.2521391.html

    DROSIA SERENITY
    A Premium Residential Project in the Heart of Drosia, Larnaca

    ONLY TWO FLATS REMAIN!

    Modern and impressive architectural design with high-quality finishes Spacious 2-bedroom apartments with two verandas and smart layouts Penthouse units with private rooftop gardens of up to 63 m² Private covered parking for each apartment Exceptionally quiet location just 5–8 minutes from the marina, Finikoudes Beach, Metropolis Mall, and city center Quick access to all major routes and the highway Boutique-style building with only 8 apartments High-spec technical features including A/C provisions, solar water heater, and photovoltaic system setup.
    Drosia Serenity is not only an architectural gem but also a highly attractive investment opportunity. Located in the desirable residential area of Drosia, Larnaca, this modern development offers 5–7% annual rental yield, making it an ideal choice for investors seeking stable and lucrative returns in Cyprus' dynamic real estate market. Feel free to check the location on Google Maps.
    Whether for living or investment, this is a rare opportunity in a strategic and desirable location.

    Electronic devices for GATE

    Posted By: lucky_aut
    Electronic devices for GATE

    Electronic devices for GATE
    Duration: 18h 37m | .MP4 1280x720, 30 fps(r) | AAC, 44100 Hz, 2ch | 24.3 GB
    Genre: eLearning | Language: English

    With 25 years Previous GATE solutions

    What you'll learn:
    Energy band theory and transport of charge carriers for GATE
    pn Junction diode and special purpose diodes including all opto electronic devices for GATE
    Transistor theory: BJT, MOS capacitor, MOSFET for GATE
    All previous year GATE questions

    Requirements:
    fundamental knowledge in electronic devices

    Description:
    The prominence of electronic devices is increasing in Graduates Aptitude test in engineering(GATE)-Electronics and Communications year on year. we can expect an average 12 marks from this subject electronic devices. Understanding device physics is quite essential to solve GATE standard questions.

    For any GATE aspirant understanding transport phenomena of charge carriers, drift current, diffusion current, energy band theory of semiconductors, electron hole pairs(EHPs), Junction formation in a diode, extending this study to three terminal devices like BJT and MOSFET is necessary. 
    Section-01:
    This course begins with a briefing on the fundamentals that are required to understand semiconductor device physics including some quantum physics fundamentals.
    Section-02:
    Energy band theory of semiconductors is explained with fermi Dirac distribution function. Intrinsic, extrinsic semiconductors are explained from the purview of energy band theory.  Previous year GATE questions are explained.
    Section-03:
    Transport phenomenon talks about mobility, conductivity, Diffusion coefficient and the most important "Einstein's relation" along with continuity equation. These topics are treated quantitatively along with the necessary qualitative analysis required to solve GATE questions.
    Section-04:
    Based on this knowledge, pn junction diode theory is well explained. It covers contact potential, Maximum field intensity, charge density profile along with the necessary energy band structures in forward bias and reverse bias conditions.  The second part of junction diode theory focuses on the quantitative analysis of diode currents, diode capacitive behavior and diode switching times. Previous year GATE questions are solved.
    Section-05:
    Zener diode, opto electronic devices like photo diode, LED and solar cell are extensively covered with all previous year GATE questions.
    Section-06:
    MOS capacitor detailed analysis is provided for deep understanding.  Previous GATE questions are solved
    Section-07:
    MOSFET structure, operation, VI characteristics are explained in enhancement and depletion mode devices with all previous year GATE questions.
    Section-08:
    Bipolar junction transistor is explained in npn and pnp configurations with necessary quantitative analysis.

    By the end of this course student is able to solve any kind of challenging question in GATE, ESE and any other PSU  related to electronic devices and semiconductor device physics.
    About Author:
    Mr. Udaya Bhaskar is an undergraduate university level faculty and GATE teaching faculty with more than 15 years of teaching experience. His areas of interest are semiconductors, electronic devices, signal processing, digital design and other fundamental subjects of electronics.  He trained thousands of students for GATE and ESE examinations

    Who this course is for:
    GATE Aspirants in Electronics and communications stream
    Engineering service exam(ESE) aspirants in Electronics specialization

    More Info