2,847 karma · joined November 10, 2007
China cracked the pollution issues of burning trash, and built a lot of high-temperature incinerator to burn trash and generate electricity.
The overcapacity leads to a shortage(!) of new trash to burn, and it has started to dig out landfills accumulated from the past decades.
The video from Asianometry is very interesting: https://www.youtube.com/watch?v=AuIEBSb2xiE
Note to tech reports: do not EVER quote this metric as it is the most useless piece of information.
This is not (yet) a thing in Go. Go does not have classes and inheritance. Interface is more like duck-typing.
Why is that?
It will not.
Consumers would expect plugging a 20Gbps device into a 40Gbps port should result in 20Gbps negotiated speed. In reality it will mostly likely end up at 10Gbps (or less) because of the mess.
Unfortunately it's not true.
Quiz: what happens when a device capable of 20Gbps is plugged into a port marked as 40Gbps?
Not true. In recent years smartphones do not advance much, and would be perfectly fine to keep working if not for the dying battery.
> At the very least we'd need to see some data that shows that most people replace batteries when it is possible to do so.
The degree of "possible" varies greatly depending on the available expertise and spare parts. Right now in EU it's cost prohibitive for both coz the special labor required is expensive and almost no official spare parts for consumers. So of coz this will be no data to support your claim.
I thought it would be easier to do DPI on Linux than macOS. No???
a) optimize signal strength for coverage (stronger signals aren't always better in multi-AP deployment);
b) provide hints via 802.11k/v/r to help clients make, hopefully, better decisions;
c) forcefully drop and disassociate clients when signal is weak enough.
But if the client has bad WiFi implementation, there's nothing much you could do.
OpenWRT currently supports 802.11k/v/r, but optimizing coverage by adjusting signal strength and channels is left for experienced users to deal with manually. There is the are where some commercial offerings will do, but the result greatly varies. AFAIK there's no ideal system anyway coz physics is hard.
why is it designed this way? what problems it's supposed to solve?
Nice UI (as the company is best known for https://ui.com)
Also HDD power management is often complicated by the bridge chip sometimes intervening.
Not recommended for long-term use.