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Liebert #5 Proof Einstein Nuanced on whether he said Miracle or not, to which he did, and how he viewed a Miracle as Macro and Religious, though his view of God changed to the Mystery of Nature


Liebert #5 Proof Nuanced Einstein with Miraculous and Wonder (inferred and implied, the thought behind the thought, intention, inspiration) (Mirari, a definition of Miracle is to Wonder), Einstein syncs on Miracle and Value


Part 1

It should be noted that Einstein’s argument doe not disprove the possibility of what may be regarding such an event as a miracle. This is not the place to mention recent discussions on the relation between quantum mechanics and religion. Suffice it to point out that all miracles recorded in history of religion were macroscopic processes for which the statistical law of quantum mechanics, generally speaking, agree with the laws of deterministic physics in accordance with the so-called Ehrenfest’s theorems.

https://books.google.com/books?id=58HQXMp1ESwC&pg=PA89&lpg=PA89&dq=einstein+miracle+religious&source=bl&ots=zocurp_mXa&sig=kao3iGssuPCAWIFKJpuw7OYPgVU&hl=en&sa=X&ved=0ahUKEwjukfD24JXRAhUP42MKHXMxCo0Q6AEIUDAM#v=onepage&q=einstein%20miracle%20religious&f=false


1. Einstein with Miraculous and Wonder (Mirari)

2. Einstein context religious, Macro sync; Liebert non-religious and micro (Quantum Mechanics) though Einstein later says the Mystery of Nature (Pythagoras’ Mystery)

3. Einstein’s Pantheistic view on God, abstract such as Energy, Mathematics, and Physics

4. Einstein Miracle Nature

5. Einstein Miracle Year

6. Einstein Genius Series, Episode 2 “Miracle”

7. Einstein History Documentary 2015

Inference to Einstein’s quote on Miracles: “Miracles convey that something happens easily.” — Einstein History Documentary


Genius

https://www.facebook.com/AlbertEinstein/videos/1435106889877775/


Einstein Miracles

https://www.facebook.com/lovewideopen/videos/2190347444525600/


Einstein on Wonder supports Liebert with Miracles in Quantum Mechanics (Mirari, the definition of Miracle is to Wonder)


1. We are all Equal

2. There is Great Value in the Wonder of a Child

4. Curiosity is the Key to Innovation

http://hackspirit.com/10-amazing-life-lessons-can-learn-albert-einstein/


“I no longer believed in the known God of the Bible, but rather in the mysterious God expressed in nature.” – Albert Einstein


Some (including the scientist himself) have called Einstein’s spiritual views as pantheism, largely influenced by the philosophy of Baruch Spinoza. Pantheists see God as existing but abstract, equating all of reality with divinity. They also reject a specific personal God or a god that is somehow endowed with human attributes.


Himself a famous atheist, Richard Dawkins calls Einstein’s pantheism a “sexed-up atheism,” but other scholars point to the fact that Einstein did seem to believe in a supernatural intelligence that’s beyond the physical world. He referred to it in his writings as “a superior spirit,” “a superior mind” and a “spirit vastly superior to men”.

http://bigthink.com/paul-ratner/albert-einsteins-surprising-thoughts-on-the-meaning-of-life?utm_campaign=Echobox&utm_medium=Social&utm_source=Facebook#link_time=1489413842


Einstein with God as Energy, Mathematician and Physicist

Some (including the scientist himself) have called Einstein’s spiritual views as pantheism, largely influenced by the philosophy of Baruch Spinoza. Pantheists see God as existing but abstract, equating all of reality with divinity. They also reject a specific personal God or a god that is somehow endowed with human attributes.

Himself a famous atheist, Richard Dawkins calls Einstein’s pantheism a “sexed-up atheism,” but other scholars point to the fact that Einstein did seem to believe in a supernatural intelligence that’s beyond the physical world. He referred to it in his writings as “a superior spirit,” “a superior mind” and a “spirit vastly superior to men”.

http://bigthink.com/paul-ratner/albert-einsteins-surprising-thoughts-on-the-meaning-of-life?utm_campaign=Echobox&utm_medium=Social&utm_source=Facebook#link_time=1489413842

Einstein on God


“I no longer believed in the known God of the Bible, but rather in the mysterious God expressed in nature.” – Albert Einstein


Dice is a Finite Game, an Infinite Game is completely differentDoesn’t Play Dice with the Universe returns


“God doesn’t play dice with the Universe” — Einstein syncs in regards to Quantum Physics…


“Well, lots of scientists believe in God.

Okay? Newton, uh, Faraday, uh, Pascal–all were believers.

Even Einstein was famous for attacking quantum theory on the grounds that God does not play dice with the universe.”

— The Big Bang Theory, The Space Probe Disintegration


https://www.newscientist.com/article/mg22830410-200-probability-is-as-useful-to-physics-as-flat-earth-theory/


Einstein was comfortable with fluid boundaries, as one sees in a famous quote of his: “I want to know how God created this world. I am not interested in this or that phenomenon, in the spectrum of this or that element. I want to know His thoughts; the rest are details.” https://www.deepakchopra.com/blog/article/5287


Einstein and Miracles, and The Miracle Year


So, despite the concept that Einstein never said Miracle or Miraculous, he actually did. The Theory of Relativity was part of his miracle year with the 4 papers (Images of The Theory of Relativity papers are on The Miraculist). Einstein saw miracles as macro and religious. Liebert said in Quantum Indeterminacy, they are micro (quanta, atom, Particle, the miracle is a Proton, 99.9999% Energy… which are part of the successful proofs on The Miraculist with words, images, and Energy) and nonreligious, which is in Quantum Mechanics. Einstein’s sign on The Theory of Relativity were the red roses, right before he and Eddington proved it. (One of several positive feedback loops on The Miraculist)


Einstein’s Miracle Year


There are names that form part of history and dates that represent milestones of our collective story. 110 years ago, between March and September 1905, the mailbox of the German scientific journal Annales der Physik received four papers that would forever change the laws of physics and, ultimately, our conception of reality: of light, of matter, of time, and of space.


The author was a young man aged 26, Albert Einstein, who worked as a clerk at the patent office in Bern (Switzerland). His career as a physicist was stagnant after the rejection of his doctoral thesis, and his scientific passion had been relegated to his spare time, to the long idle hours in the office and to chats with his colleague and friend Michele Besso. We recall here the four major achievements of Einstein in his miracle year:


Photoelectric Effect


On June 9, 1905, Annales der Physik published the dissertations of the patent clerk about the photoelectric effect and the physics of light. “A heuristic point of view of the production and transformation of light” introduced the revolutionary idea that light is composed of both energy and particles: quanta for Einstein, photons for history. This concept that physical systems can behave both as waves (energy) and as particles (matter) would be the seed of one of the two pillars of modern physics: quantum mechanics. Sixteen years later, this theory of the photoelectric effect would take Einstein to the summit of science when, in 1921, he received the Nobel Prize for Physics.


Brownian motion


The second and the least important of the papers, published on July 18, was “On the movement of small particles suspended in a stationary liquid, as required by the molecular-kinetic theory of heat.” Although it did not revolutionize the principles of physics, nor earn him a Nobel Prize, Einstein found in a physical phenomenon (Brownian motion) empirical evidence of what many (but nowhere near all) scientists thought at the time, that matter is composed of atoms. In attempting to explain this curious phenomenon, Einstein not only mathematically confirmed the existence of atoms and molecules but, while doing so, he opened a new field in the study of physics, statistical physics.


Special relativity


The third paper that year was perhaps the most groundbreaking. “On the Electrodynamics of Moving Bodies“ arrived at Annales der Physik on June 30 and was published on September 26, 1905. It presented the condensation of Einstein’s new physics in the well-known theory of special relativity, which preceded general relativity (which in 1915 also included the influence of acceleration and gravity). Einstein postulated in this paper that the speed of light is immutable, constant and independent of the observer’s movement. Therefore, except for the constant speed of light, everything is relative, including time, distance and mass.


Mass-energy equivalence


On November 21, the last of the four papers was published. “Does the inertia of a body depend on its energy content?” is, in effect, an epilogue of all the other papers. The mathematical proof of special relativity and, therefore, the confirmation of the equivalence between matter and energy, were condensed into the most famous equation in history: E = mc2.


Fortunately or unfortunately, from E = mc2 was deduced the existence of a remain of energy in processes such as the nuclear fission of atoms. Terrified by the military applications and the use that the Nazis intended to make of them, in 1939 Einstein wrote a letter to Roosevelt, the President of the United States, so that the US would take the lead. And that letter ended up leading to the bombs dropped on Hiroshima and Nagasaki, forty years after Einstein’s annus mirabilis.


“Newton, please forgive me,” Einstein once said, knowing that his advances questioned the foundations that the English scientist had laid in the seventeenth century. In fact, Newton also had his miracle year, since between 1665 and 1666, while sealed up in his house seeking refuge from the plague, he formulated his law of gravitation and his theory of color. But science is like this; for a breakthrough to be made, for a new idea to be confirmed, others have to be discarded.


Perhaps a new scientific revolution will arrive that discards some of Einstein’s ideas, but his method will endure forever. The great merit of Einstein was in not trying to explain the results, the experiments themselves, but rather in developing a theory in which the experiment is the result and not the origin of a phenomenon.

By Luis Creo for Ventana al Conocimiento

https://www.bbvaopenmind.com/en/einsteins-miracle-year/…

http://ed.ted.com/…/einstein-s-miracle-year-larry-lagerstrom




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