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From Nature to Computers

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mohamad gharishvandi

1:48:49

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  • 2. How to approach this course.mp4
    01:50
  • 3. From atoms to electric field.mp4
    03:22
  • 4. Gravitational field and Electric field.mp4
    02:22
  • 5. Conductors, insulators, semiconductors.mp4
    05:43
  • 6. Electronegativity, ionic and covalent bonds.mp4
    02:43
  • 7. Silicon and semiconductors.mp4
    04:52
  • 8. Ohms law from a physics perspective.mp4
    02:48
  • 9. Electrons and holes-free charges in silicon.mp4
    08:12
  • 10. Doping-n-type and p-type.mp4
    06:17
  • 11. Pn junction diode.mp4
    11:02
  • 12. Capacitors.mp4
    03:19
  • 13. Pn junction in reverse bias.mp4
    06:53
  • 14. Pn junction in forward bias.mp4
    09:58
  • 15. Transistors as switches.mp4
    19:18
  • 16. Creating gates using transistors-creating computers using gates.mp4
    20:10
  • Description


    Start from atoms to work our way up in creating transistors, logic gates and computers

    What You'll Learn?


    • Structure of atoms
    • Conductors, insulators, semiconductors
    • Doping, n-type,p-type
    • Making switches from semiconductors
    • Transistors
    • Diodes

    Who is this for?


  • Anyone who wants to understand computer from fundamental concepts in an intuitive way
  • What You Need to Know?


  • No requirement
  • More details


    Description

    We start from atoms at the most fundamental level and explain what its made of, and how we distinguish them from one another, and work our way up in creating transistors as switches from atoms, and logic gates from transistors and computers from logic gates.

    The best way to understand anything is to use as few abstraction as possible, thats why our lowest abstraction is atom. Then we explain what atom is made of, and we distinguish atoms from the number of protons that they have.


    Then we introduce silicon atoms, and explain why its important for us, and how we create switches from it.

    In general we could say this course could be categorized in 2 sections, one is, how to create an electronically controllable switch from atoms and second, how to create computers from switches, or how to create a universal logic gate from the electronic switch.


    But the important thing that makes this course different from the others, is that we don't take anything for granted. Meaning at each turn we explain a concept and after understanding that concept we define the abstraction ourselves.

    As an example we carry out some experiments and based on the results of that experiment we would create abstractions and move on to the next topic.

    Who this course is for:

    • Anyone who wants to understand computer from fundamental concepts in an intuitive way

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    mohamad gharishvandi
    mohamad gharishvandi
    Instructor's Courses
    i have Master of Science in Electronics engineering . and for 10 years i have been studying computer science too. i have been teaching subjects like programming like python , networking concepts, cryptography , penetration testing in computer science and Analog Electronics, digital Electronics, Electrical circuits, data communication , CMOS integrated circuits , signals and systems and advanced mathematics for 4 years. i think we should learn computer science in high level first and then relate it to electronics concept by going deep in the lower level and then at last analyze them using mathematics concepts . that is why i dedicate most of my time studying these concepts to go deeper.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 15
    • duration 1:48:49
    • Release Date 2024/01/04