Is the latency the same now as it was for the signal itself? Obviously the throughput is rather different.
The British empire's resilient subsea telegraph network
11–20 of 64 posts
Re: The British empire's resilient subsea telegraph network
#12An interesting book on the subject of telegraph networks is The Victorian Internet by Tom Standage [1]. As well as the technical and commercial drivers, it also describes how the telegraph forced people to confront concepts like simultaneity, information being distinct from its physical medium, privacy, early approaches to encryption, etc. A fascinating book. [1] https://en.wikipedia.org/wiki/The_Victorian_Internet
Re: The British empire's resilient subsea telegraph network
#13Article in paywall at https://www.wired.com/1996/12/ffglass/
The book and the article are fascinating explorations of the impact of technology and cryptography on the world. The people who did the work to invent and build these worldwide systems were just like us (hackers, inventors, technologists), and we are just like them in a way. We all stand on the shoulders of giants.
Also I can't believe that article is 30 years old, boy I'm old.
Re: The British empire's resilient subsea telegraph network
#14Re: The British empire's resilient subsea telegraph network
#15When visiting Ayers Rock in Australia I stayed in Alice Springs. While I was there I learnt that Alice Springs exists because it was a repeater station for a telegraph line that stretched from Southern Australia all the way to London. There would be people listening to morse code, and tapping it out again to the next repeater station. Blew my mind that there was a wire that went all the way to London from Australia!
> Blew my mind that there was a wire that went all the way to London from Australia! Before the telegraph they used to do things wirelessly: https://www.brunningandprice.co.uk/_downloads/telegraph/tele... (Not quite London to Australia though...) In the late-1700s/early-1800s the Admiralty Telegraph was used to relay messages between London and Portsmouth (70 odd miles apart) using a semaphore type system with repeat…
https://www.utas.edu.au/library/companion_to_tasmanian_histo...
Sadly the semaphore pole itself is gone. The building is still there and was used until 1969.
Re: The British empire's resilient subsea telegraph network
#16An interesting book on the subject of telegraph networks is The Victorian Internet by Tom Standage [1]. As well as the technical and commercial drivers, it also describes how the telegraph forced people to confront concepts like simultaneity, information being distinct from its physical medium, privacy, early approaches to encryption, etc. A fascinating book. [1] https://en.wikipedia.org/wiki/The_Victorian_Internet
Oh wow will definitely give that book a read, very interesting.
Re: The British empire's resilient subsea telegraph network
#17Re: The British empire's resilient subsea telegraph network
#18An interesting book on the subject of telegraph networks is The Victorian Internet by Tom Standage [1]. As well as the technical and commercial drivers, it also describes how the telegraph forced people to confront concepts like simultaneity, information being distinct from its physical medium, privacy, early approaches to encryption, etc. A fascinating book. [1] https://en.wikipedia.org/wiki/The_Victorian_Internet
Re: The British empire's resilient subsea telegraph network
#19Is the latency the same now as it was for the signal itself? Obviously the throughput is rather different.
Over long distances, fibre optic would have lower latency so it'd be shorter if taking the same path today. But these signals would likely have been morse code and sent one-way at a time, so latency wouldn't have been noticed unless the repeaters were people rebroadcasting the signal (no idea how that was done).
Source that claim, it's well understood the speed of light is around 66% due to refractive index in glass.
It gets weird with telegraph cables and capacitance, wikipedia at least touches on it here: https://en.wikipedia.org/wiki/Speed_of_electricity