Georg Ohm Quotes

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Ohm found that the results could be summed up in such a simple law that he who runs may read it, and a schoolboy now can predict what a Faraday then could only guess at roughly. By Ohm's discovery a large part of the domain of electricity became annexed by Coulomb's discovery of the law of inverse squares, and completely annexed by Green's investigations. Poisson attacked the difficult problem of induced magnetisation, and his results, though differently expressed, are still the theory, as a most important first approximation. Ampere brought a multitude of phenomena into theory by his investigations of the mechanical forces between conductors supporting currents and magnets. Then there were the remarkable researches of Faraday, the prince of experimentalists, on electrostatics and electrodynamics and the induction of currents. These were rather long in being brought from the crude experimental state to a compact system, expressing the real essence. Unfortunately, in my opinion, Faraday was not a mathematician. It can scarcely be doubted that had he been one, he would have anticipated much later work. He would, for instance, knowing Ampere's theory, by his own results have readily been led to Neumann's theory, and the connected work of Helmholtz and Thomson. But it is perhaps too much to expect a man to be both the prince of experimentalists and a competent mathematician.
Oliver Heaviside (Electromagnetic Theory (Volume 1))
There was no way out of this; the Col was upset for the moment.  I’d seen this before and even if I confessed that it was my fault that I’d created the thunderstorm this morning just to halt flight operations it wouldn’t have mattered so I decided to take a chance and break this up while hopefully maintaining a straight face.      “Well Sir it’s a highly technical problem that has to do with electricity and humidity.”      “WHAT technical problem with electricity and humidity?!”      “Well Sir, it’s the Geeblefarbs.”      “GEEBLEFARBS?!!  What the fuck are Geeblefarbs?”      “Well Sir, they are little microscopic things that ‘Geeble’ down the electrical wires transporting the Ohms that make the electrical stuff work.  When they get wet or it’s really humid outside the Ohms pick up moisture and  swell up, which causes the Geeblefarbs to get too fat and they can’t ‘Geeble’ down the wires and when that happens the things like the UHF radio, TACAN and other electrical equipment just won’t work.”      Now I’ve known other officers who weren’t very mechanically inclined and never curious enough to really know if this was a true technical explanation or not.  I also knew that with those types of people if you said something like this in an authoritative manner that they would simply say, “Oh” and go on to another subject, but I knew Col Psaros (Big George) better than that.      “Geeblefarbs and fat Ohms, you’ve got to be shitting me!”      “I am Sir.”      “You gonna fix this problem we are having, quickly, I hope.”      “Yes Sir, it’s in work now, weather aside, we will be ready to go in about 1 hour.
W.R. Spicer (Sea Stories of a U.S. Marine Book 4 Harrier)
In the sixteenth century the Reformation introduced a new idea. This was the notion that knowledge is not simply the province of ecclesiastical institutions but that, especially when it comes to matters of conscience, each man should decide for himself. The “priesthood of the individual believer” was an immensely powerful notion because it rejected the papal hierarchy, and by implication all institutional hierarchy as well. Ultimately it was a charter of independent thought, carried out not by institutions but by individuals. The early Protestants didn’t know it, but they were introducing new theological concepts that would give new vitality to the emerging scientific culture of Europe. Here is a partial list of leading scientists who were Christian: Copernicus, Kepler, Galileo, Brahe, Descartes, Boyle, Newton, Leibniz, Gassendi, Pascal, Mersenne, Cuvier, Harvey, Dalton, Faraday, Herschel, Joule, Lyell, Lavoisier, Priestley, Kelvin, Ohm, Ampere, Steno, Pasteur, Maxwell, Planck, Mendel. A good number of these scientists were clergymen. Gassendi and Mersenne were priests. So was Georges Lemaitre, the Belgian astronomer who first proposed the “big bang” theory for the origin of the universe. Mendel, whose discovery of the principles of heredity would provide vital support for the theory of evolution, spent his entire adult life as a monk in an Augustinian monastery. Where would modern science be without these men? Some were Protestant and some were Catholic, but all saw their scientific vocation in distinctively Christian terms.
Dinesh D'Souza (What's So Great About Christianity)