CORed
Penultimate Amazing
Here's a high speed photograph of the collision:
POW!
Holy Higgs Boson, batman!
Here's a high speed photograph of the collision:
POW!
These beams are at 1.75 trillion eV (10^12 eV, or TeV) per nucleon, times 208 nucleons, times two beams, so 7x10^14 eV per head-on collision. That's about 0.1 millijoules.
(ETA: The press release image may or may not be a real head-on collision. It'll take some data analysis before we even know.)
So is that temperature/energy near any point that we are looking for? Or is this just the opening slavo?
You're right, nothing practical has ever come out of the CERN research organization. NOTHING PRACTICAL AT ALL![]()
Whenever anyone points to practical results from CERN research they point to by-products of the research like this. Any large project will produce similar results. I have never seen benefits to society due to the results of experiments themselves. At least after WW2.
You're right, nothing practical has ever come out of the CERN research organization. NOTHING PRACTICAL AT ALL![]()
No, supporting studies and development of the engineering required resulted in the world-wide web. The internet was a development of ArpaNet, entirely different. It's also pushing development of cloud computing and even higher speed trunk communications. It's also helped development of control systems over the years.Yes, collisions of particles at ultra high speeds resulted in the internet. Brilliant.
No, supporting studies and development of the engineering required resulted in the world-wide web. The internet was a development of ArpaNet, entirely different. It's also pushing development of cloud computing and even higher speed trunk communications. It's also helped development of control systems over the years.
Then we have the offshoots from the early particle accelerators, leading to synchrotrons providing real engineering research that has lead to such things as thin-film magnetics (hard disk drives), better pharmacology, materials science, and on and on...
Then there's neutron sources like ISIS with more developments, now fourth generation X-ray sources, and fusion research such as JET, ITER, Polywell reactors, high power laser research, super-conductor theories,...
Just a quick thought there, if I really wanted to comprehensively argue the point I'm sure I could find a LOT more detail!
What, that's delusdional claptrap. Even if I was to follow that same stupid line of reasoning it would still mean that I could claim that our better understanding of the various nuclear forces and sub-atomic particles have led to the point where we are on the threshold of fusion power, whether it be from massive reactors like ITER / DEMO or small devices like polywells, MRI scanners and a whole host of imaging techniques.Completely and utterly beside the point. I said that the collisions themselves and the resulting data will likely not provide much in the way of real world value, or if it does it will not be for a very very long time. Innovations that came about from the development of the systems necessary to create the collisions is an entirely different matter.
You never stipulated that you meant out of the collisions themselves. Even then that's rubbish, because fusion reactors require neutral particle beams to provide heating of the plasma.Interesting, though for some reason I doubt this will provide much in the form of real world practical value.
ahh, I thought they were talking about a fireball that was subatomic in size.
To be honest, I stopped paying any attention to physicists since they flipped-flopped on the whole sun going round the earth thingy.
Interesting, though for some reason I doubt this will provide much in the form of real world practical value.
Interesting, though for some reason I doubt this will provide much in the form of real world practical value.