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OneDonOne

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They do. The micro-precision subculture required to (in order):

1. Powder prep your tungsten carbide

2. Form said powder

3. Thermally prepare the resulting slurry using a vacuum forming furnace

4. Finish it with diamond lap grinders, lapping machines and polishing machines

5. Clean it ultrasonically, with solvent, rinse, then dry them.

6. Have the metrology required to test thousands of micron-scale balls a day (a world-beating skill in itself)

7. Build a QA lab that can assure the quality of said balls statistically (you can test them all).

8. And then integrate them via socket assembly

are not just hereditary, but proprietary. And assuming a competitor does manage to achieve the basic ISO 3290 and ASTM F2094 standards, you still need tacit knowledge. Stuff like sintering temperature curves, proper powder grain distribution, polishing chemistry, proper statistical rejection thresholds and a whole lot more.

And that is just the ball. Not the socket, or the ink channels. Making a perfectly spherical 0.5 mm ± 0.0001 mm tungsten carbide ball requires the same techniques used in building micromotors, medical devices, and semiconductor subcomponent manufacturing. Techniques such as high-volume sorting, advanced powder metallurgy, controlled sintering, and precision machines that operate 24-hour shifts without drifting. All operated by modern process engineers who are the spiritual (or actual?) descendants of Swiss watchmakers or the glassmakers of Murano.

It is not the pen, it is the pen tip. Ballpoint pen tips are microscopic tungsten carbide ball held inside ultra-thin steel sockets. So you need cutting tolerances precise to 0.001 millimeters. If the socket is a fraction of a micron too loose, the ink leaks. Too tight, and the pen won't write.

Source from al-Arabiya: https://english.alarabiya.net/variety/2017/01/14/At-last-Chi...

The point (no pun intended) is that China was beginning to crack the processes for making the precision machine tools that make machine tools.

The LCOE may be triple, but the LFSCOE [0] (full system cost, not just cost of generation) however of solar, is triple that of nuclear in Texas, and 15x that in Germany. Notice that 1. Solar Irradiance per location is actually taken into consideration and 2. Renewables have not stopped the ongoing deindustrialization of Germany due to high energy costs.

[0] (PDF) https://iaee2021online.org/download/contribution/fullpaper/1...

The overbuilding that is required for stable electricity from the sun or wind makes that a non-starter. It is no wonder that when Germany tried this, they deindustrializrd, with some of the world's highest electricity prices. That should be a lesson to anyone who believes in renewables. Never mind the various issues that would occur with charging EVs during the night/overcast/non-breezy cconditions

Solar power is not infinite. Abd as long as you are using the same amount of energy/power to obtain the energy you wsnt to use, the pyshical limits of the size of the solar plant, time it takes to produce said energy, and other factors, makes said meyjod economically unviable.

Which is why we aren't doing already.

Even during WWII Germany had to synthesize much of its hydrocarbon fuel.

Germany [0], as well as Apartheid South Africa (SASOL), and now China, synthesized that fuel from coal. Which is itself a fossil fuel.

[0] https://warhistory.org/@msw/article/synthetic-production-of-...

Obviously, this will not be done as long as cheaper fossil hydrocarbons are offered. However the use of fossil hydrocarbons for plastic, asphalt or other applications that do not release CO2 is not harmful.

The issue with any fuel/feedstock production is not just the financial cost but the amount of energy returned on the energy invested. A modern civilization (like Japan) requires 10:1. Synfuels made using the method you described are 1:1 - they provide as much energy as it takes to make them.

Good for the Chinese. The rest of us do not have the upfront capital to purchase these trucks. And there is still the matter of fertilizer, concrete, bulk chemicals etc. And solar panels. There is a very good reason why solar psnel factories (like JinkoSolar run off coal or hydro and not solar power.

Modern civilization requires semiconductors, concrete, asphalt, fertilizer, and plastics to function. Never mind aviation and marine fuel to function. All of these require hydrocarbons. As long as that is the case, renewable power will continue to be a niche.

There is a missing link that shows the post-Apartheid behaviour - Paul Calder Le Roux.

https://coinmarketcap.com/academy/article/satoshi-files-paul...

It is all their when you include him: the unstable personal identity. The contempt for average South African (British or Afrikaaner) while being a minority white. The Sovereign Individualism. The use of the Internet to pioneer new firlds of commerce (telemedicine). The contempt for women. The attempts breed Ubermenschen. And of course, the utter contempt for Rule of Law.

We can also explain much of their behaviour when we look at his life story.

Not all of us are able to, or want to, use ebooks. Especially textbooks where one may be going back and forth through chapters fairly frequently. Simply saying "muh Libgen" ignores how most people , especially teenagers, study. For teenagers, any smart device will lead to distraction if connected online. They usually choose Insta over the PDF reader in their distraction.

If any of this is true:

1. Why haven't renewable solutions solved Germany's energy crisis?

2. Why didn't Germany experience its current problems while its nuke pants were operating?

3. Why has Germany been opening dirty lignite mines instead of just applying Gigawatts of renewables?

Something is not right I think.

Not to sound like some sort of Pale Moon absolutist, but, I feel like the frontend changes were too much. And 3 years without Firefox biggest selling point is painful. It hurts. It really hurts. The only reason I haven't sold my soul and dignity to Chromium is that Iceraven lets me use μMatrix.