104 karma · joined December 4, 2018
5 and 5, 73.
I don't know if the parent comment was trying to equate American English and Simple English - I can see it as a way to dismiss American English as a "lesser" language (which it isn't, as you say), but I wouldn't start by assuming that.
(the two scales are due to price and bulk: the Sigma is about the size of a hardback book and a few hundred pounds, an XRF is the size of a large 3d-printer and many thousands).
I don't know why they did it, but it follows the same pattern as the pi400 - develop a whole new board, rather than a daughterboard for the pi4 compute module. If I had to guess, it's probably about reducing e-waste: if someone wants a compute module and it's out of stock but there are pi500s available, why wouldn't they buy a pi500, strip the compute module out and dump the rest of the machine in the bin?
And to be fair to them, they're dogfooding a fair amount - the RP1 and the RP2 are in the design, rather than a generic southbridge and keyboard controller.
The battery already lasts two days under my usage model, and the phone still has a five year warranty and OS support for another three years. I see that Fairphone are still selling some repair parts for FP2 and FP3, so I expect to be able to repair my phone through that whole time period unless something weird happens.
The FP5 looks like a nice upgrade, but I don't feel short-changed: I got a new phone when my old one was failing, and it's not absolutely top-of-the-line, and that's fine. Like you, I'll think harder about the next round of upgrades (maybe to the FP6, maybe the FP7), and I'd love it if Fairphone were to be clearer about their release schedule, but I understand that they don't want to Osborne themselves.
https://en.wikipedia.org/wiki/Osborne_Computer_Corporation#T...
Here's a link to the VHF band plan we use here in the UK - obviously I can't speak for other countries: [https://rsgb.services/public/bandplans/19/ ]. It's _littered_ with SSTV, beacon and digital mode allocations (and for clarity, that's a good thing). The digital mode allocations are full of people chatting in text using FT-8 or JS8Call (more in HF than VHF, those, but the principle holds). On the next page, there's an entire 1MHz allocation dedicated to wideband digital data modes.
If you're a licensee, there's plenty of innovation and digital experimentation space available. Sure, a chunk of the traditionalist ham community aren't excited about it, but there's plenty of us who are. And, as ever, you don't need a license to receive...
The shouting fanbeings of rust put me off looking into it for years, because when I kept getting "rewrite it in rust!" as the answer to "there's a problem with $THIS_CODE" when talking with colleagues, _even when those colleagues had minimal rust experience_, all I could conclude was that the whole thing was an empty promise and that no-one knew how to solve the problem, but everyone "knew" that the New Cool Language was the way to fix everything.
Generalisation from incomplete data - no doubt there was a sensible majority in the rust community, but the fanbeings were _loud_.
FWIW I was wrong: I'm getting into rust now and I like what I see, and the discussions around it online and with colleagues are pretty sensible. But, it's taken a while to get there and when you've been in tech for a couple of decades you see this hype cycle and get jaded to it. Erlang is the new hotness ... OCaml is the new hotness ... Java is the new hotness, rewrite everything in Java, wait C# is the new hotness...
I suspect rust is here to stay, and I'm gonna learn more about it, and I regret some of my past words about it. But my problem was never with the increased memory safety, or the language at all, pretty much, just the early community.
TL;DR: Other humans are the worst, bug reported, fix unlikely :)
More detail at https://carolinacomfortsc.com/hvac/what-are-heat-strips/ (no affiliation, they were the first authoritative return from my web search).
I've never heard of a UK house having a larger than 100A service (although I imagine they exist here and there - it's certainly not common).
So yes, I think you're right that it's a word-play between the UI design concept and the cost of implementation concept.
LFDs are decent for telling you if you're infectious _right now_ - they're much worse than PCRs for telling you if you have covid at all.
Disclaimer: I'm a software engineer, do not take medical advice from me. My partner is a biochemist and I regularly chat with a couple of council covid-response officers, and the above is the explanation I've had from them when I've asked.
All that being said, I'd expect a permanently-installed stove to have a flue (which results in the stove technically being a leak, but that's solvable). I assume the kerosene stove mentioned above is in use while the house is incomplete, so not yet airtight.
The retrofit plan that an eco-retrofit architect is currently drawing up for me indicates that the biggest benefits are on the "windows=>triple-glazing" (3->2 tonnes Co2e/year) and "external-wall-insulation" (2->1.1 tonnes CO2e/year) steps, but I don't have cost data to establish a cost-benefit ratio for them yet. I'd always suggest that someone who's looking to make their house slightly more efficient start with good triple-glazed windows, though - single glazing and some types of older double glazing can be really surprisingly lossy. The airtightness and MVHR work is spread out among several stages, so is harder to analyse, but older houses leak like sieves and anywhere you can feel a breeze in the winter you can be fairly sure that you're paying to heat air that's escaping the house.
"What works best" is really a bit of a rabbithole. The standards I'm working to are here: https://aecb.net/aecb-retrofit-standard/ and the AECB site in general is full of information though it can be quite dense and jargonized. You may also find https://passivhaustrust.org.uk/news/detail/?nId=867 interesting - it's a report on retrofitting an entire block of flats by stripping and rebuilding the interior using /Internal/ Wall Insulation instead of the more common EWI - it's less popular because it can be a pest to do electrical and plumbing work around, but it's an option. The three strong pillars of eco-retrofit, at least as I've seen them to be so far, are airtightness (and ventilation!), wall insulation and triple-glazing, and competently made and installed glazing will be the easiest sell to the management company I imagine (if you don't already have it). The other two are more involved.
* Full external-wall-insulation (180mm thick) with brick slip dressing so it doesn't stick out like a sore thumb amidst all the brick houses in the road.
* Triple-glazed windows and doors throughout, replacing single-glazed original units which are at end-of-life.
* 300mm deep loft insulation, replacing poor-quality and patchy 80-100mm insulation.
* Full airtightness sealing (i.e. the house should leak almost no warm air to the outside world), ...with heat-recovering mechanical ventilation so we don't all suffocate.
* Air-source heat pump to replace the gas boiler, driving underfloor heating in place of the wet-circuit radiators.
* 12-panel solar photovoltaic install on the roof (plus batteries etc).
Fully agreed on decarbonizing heating, but it's not an either/or thing, both approaches work and are to some extent necessary. Any heat you're not losing to the outside world doesn't need to be replaced by the heating system, is the theory. Here in the UK, I'm working to AECB (Association of Eco-Conscious Builders) standards: we cant quite hit PassiveHaus without knocking the whole thing down and rebuilding, but we can get pretty close.
There's a whole separate argument to be had about subsidy of electric heating vs subsidy of gas heating, if I recall correctly. A good electric heating system should be just as effective as a gas system, but in the UK it can cost up to four times as much to run because of the current mess of subsidies. That needs sorting out, as well, as telling people they have to pay much more for a somewhat more eco-conscious system isn't going to fly with the general population.
The necessary retrofit work is expensive, on the order of £50'000 over the next ten years, which makes it pretty much out of reach for the huge majority of people in the UK, but will take that down to 0.2 tonnes/year (narrowly missing net-zero because of the concrete-slab construction of the floor). We really need to be subsidising retrofit work like this, so that ordinary people can afford to have it done, because it makes a huge difference to what must be millions of similar houses in the UK alone.
It was a ~1000-person national level game in a fantasyish setting, and one of the game elements was that you were explorers and colonists in a strange new land, and you could send messages to your supporting factions "back home" to request support or supplies or whatever. Those messages had to be carried by a ship belonging to a trade house, and any supplies that your supporters sent you had to come back by the same method, and all the trade houses were represented by player groups on the field...
So yeah, a group of players would write to their "sponsors", and my group (as one of the trade houses) would open their letter, see what they were requesting and then forward the letter to the game organisers. The organisers would play the part of the remote sponsor, and send a letter back, which we'd open and read to see what orders the players were being given and what support they could expect (then we'd reseal the letter and deliver it). This positioned us super well to sell them exactly what they needed to achieve those goals, at an only slightly elevated "rush" price.
We didn't open every letter, and we didn't scam everyone - we made most of our money legitimately. But it was a fun side-game.
So it's not so much that the seal holds the lock closed, as that the seal obscures the lock to the point that opening non-destructively is much harder.