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  • In the US for every employer I've seen, holiday pay is usually 8 hours of straight time (assuming you have an 8 hour shift) plus 1.5x for the hours you worked. So if you worked your normal 8 hour shift you get 2.5x pay. But it's not. If you worked less then 8 you get 8 hours straight plus 1.5x the hours you worked. It's also common that if you worked 40 hours before the holiday that straight time becomes overtime. Usually only applies to Thanksgiving/black friday. And occasionally Christmas when it falls towards the end of the week.

    Needless to say this varies among employers. If you have a union you likely get double or even triple time for hours worked on a holiday, but likely still the same straight time pay for the day itself. Legally the company doesn't have to pay anything extra for holidays for time not worked.

  • The internet wouldn't allow this
  • It's only arbitrarily easy since water has a density of 1 kg/l in metric, as it was designed to do so. If you happened to know the density of water is 62.2 lb/ft^3 then the equation is roughly 123*60 which is 360 lb. 372 if you can actually paid attention to what common core was trying to teach. If the material was anything other then water the math would be just as difficult to do in imperial or metric.

    Metric is still far superior as the harmonized units make density in particular much easier to convert between. About the only thing imperial is better at is thread pitch of screws. I will also maintain that when describing human temperatures for weather Fahrenheit is a superior scale, but that's just more personal preference and experience then any rational basis.

  • The internet wouldn't allow this
  • Gauge is historically number of passes through gauging machine. With the machine and material in question being different for every single one. We took that and put it to a standard, so it's super messy and makes no sense.

  • Young climate activist tells Greenpeace to drop ‘old-fashioned’ anti-nuclear stance
  • It's not unfair, nor is it misleading. Coal contains a few parts per million of uranium. Sometimes more depending on source. So when burned this uranium is released into the atmosphere. When used for fission uranium has about 200 million times the energy density then burning the carbon carbon bonds in coal. So kilo for kilo a coal power plant dumps about as much uranium and other nasty trace elements into the atmosphere then a nuclear plant has in it's core.

    The situation is even more unfavorable for coal as nuke plants don't typically dump any of their primary radioactive elements to atmosphere. Increasing scale of nuclear doesn't change this either as it would require every nuclear plant on the planet to go full Chernobyl just to match what coal outputs.

  • InitialsDiceBearhttps://github.com/dicebear/dicebearhttps://creativecommons.org/publicdomain/zero/1.0/„Initials” (https://github.com/dicebear/dicebear) by „DiceBear”, licensed under „CC0 1.0” (https://creativecommons.org/publicdomain/zero/1.0/)UL
    ultracritical @lemmy.world
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