Section 401:
September 24 | Victoria Martz - How were sound, pictures and color encoded in analog television transmissions? |
October 1 | |
October 8 | Benjamin Cannon - How AM and FM signal transmission differ and what the advantages and drawbacks of each are |
October 15 | Sam Massa - What is a cat's whisker and how does it work? Damian Reyes - How does a crystal earpiece work? |
October 22 | NO PRESENTATIONS (Alberto at TB) |
October 29 | Robert Buttles - What is a heterodyne? Seheon Kim - What does "ham radio" indicate? |
November 5 | David Kessler - Ionospheric plasma Christopher Lim - How is high definition television transmitted and how did the switch to HD broad-casting affect the spectrum of available bandwidth? |
November 12 | Jacob Shpiece - Marconi and early radio broadcasting Michael Nester - What is a vacuum tube (the predecessor to the transistor) and how does it work? |
November 19 | Deepak Basnet - Antenna engineering Steven Morton - How do cellular networks work and how are frequencies allocated? |
Section 301:
September 26 | |
October 3 | Alex Medeiros - How do cellular networks work and how are frequencies allocated? |
October 10 | Charles Turner - What is a vacuum tube (the predecessor to the transistor) and how does it work? |
October 17 | Patrick Goggins - Marconi and the early history of radio broadcasting |
October 24 | NO PRESENTATIONS (Alberto at TB) |
October 31 | Raymond Mencia - Ionic sphere and EM communication William Lacey - What is a heterodyne? |
November 7 | James Knell - What is a cat's whisker and how does it work? Adam Zeitlin - How were sound, pictures and color encoded in analog television transmissions? |
November 14 | Mike Moss - Antenna engineering Jacob Bremerman - How is high definition television transmitted and how did the switch to HD broad-casting affect the spectrum of available bandwidth? |
November 21 |