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Technology In ScienceJournal of Engineering and Technological Sciences welcomes complete analysis articles in the region of Engineering Sciences from the following topic locations: Aerospace Engineering, Biotechnology, Chemical Engineering, Civil Engineering, Electrical Engineering, Engineering Physics, Environmental Engineering, Industrial Engineering, Information Engineering, Mechanical Engineering, Material Science and Engineering, Manufacturing Processes, Microelectronics, Mining Engineering, Petroleum Engineering, and other application of physical, biological, chemical and mathematical sciences in engineering. Now, look, I know that physicists have a reputation of getting narrow-minded. But the cause we have this reputation is that we attempted the crazy shit long ago and just discovered it doesn’t operate. You contact it narrow-minded,” we call it science.” We have moved on. Can elementary particles be conscious? No, they can’t. It really is in conflict with evidence. Here’s why.

Science may drive technological development, by creating demand for new instruments to address a scientific question, or by illustrating technical possibilities previously unconsidered. In turn, technologies might drive scientific investigation, by generating demand for technological improvements that can only be produced by means of research, and by raising inquiries about the underlying principles that a new technology relies on.

Also note that even even though the LHC reaches energies up to 14 TeV, it collides protons, and those are not elementary particles but composites of quarks and gluons. The total collision power is for that reason distributed more than the constituent particles, meaning that constraints on the masses of new particles are beneath the collision energy. How good the constraints are depends on the expected number of interactions and the amount of information collected. The existing constraints are usually at some TeV and will increase as much more information is analyzed.

For the majority of human history, technological improvements had been accomplished by opportunity, trial and error, or spontaneous inspiration. When the modern scientific enterprise matured in the Enlightenment , it primarily concerned itself with fundamental queries of nature. Analysis and improvement directed towards instant technical application is a fairly current occurrence, arising with the Industrial Revolution and becoming commonplace in the 20th century.

My very best shot at a permanent position in academia would have been LHC predictions for physics beyond the standard model. This is what I did for my PhD. In 2003, I was all set to continue into this path. But by 2005, three years ahead of the LHC began operation, I became convinced that those predictions had been all nonsense. I stopped functioning on the subject, and rather began writing about the issues with particle physics. In 2015, my agent sold the proposal for Lost in Math”.

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