Atom Select Between Quotes

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But I would not say a word until I could set aside all I know or believe about nations, war, leaders, the governed and the ungovernable; all I suspect about armor and entrails. First I would freshen my tongue, abandon sentences crafted to know evil--wanton or studied; explosive or quietly sinister; whether born of a sated appetite or hunger; of vengeance or the simple compulsion to stand up before falling down. I would purge my language of hyperbole, of its eagerness to analyze the levels of wickedness; ranking them, calculating their higher or lower status among others of its kind. Speaking to the broken and the dead is too difficult for a mouth full of blood. Too holy an act for impure thoughts. ... I must be steady and I must be clear, knowing all the time that I have nothing to say--no words stronger than steel that pressed you into itself; no scripture older or more elegant than the ancient atoms you have become. And I have nothing to give either--except this gesture, this thread thrown between your humanity and mine: I want to hold you in my arms and as your soul got shot out of its box of flesh to understand as you have done, the wit of eternity; it's gift of unhinged release through the darkness of its knell.
Toni Morrison (The Source of Self-Regard: Selected Essays, Speeches, and Meditations)
The concept of internal selection, of a hierarchy of controls which eliminate the consequences of harmful gene-mutations and co-ordinates the effects of useful mutations, is the missing link in orthodoxy theory between the 'atoms' of heredity and the living stream of evolution. Without that link, neither of them makes sense. There can be no doubt that random mutations do occur: they can be observed in the laboratory. There can be no doubt that Darwinian selection is a powerful force. But in between these two events, between the chemical changes in a gene and the appearance of the finished product as a newcomer on the evolutionary stage, there is a whole hierarchy of internal processes at work which impose strict limitations on the range of possible mutations and thus considerably reduce the importance of the chance factor. We might say that the monkey works at a typewriter which the manufacturers have programmed to print only syllables which exist in our language, but not nonsense syllables. If a nonsense syllable occurs, the machine will automatically erase it. To pursue the metaphor, we would have to populate the higher levels of the hierarchy with proof-readers and then editors, whose task is no longer elimination, but correction, self-repair and co-ordination-as in the example of the mutated eye.
Arthur Koestler (The Ghost in the Machine)
For unknown ages after the explosive outpouring of matter and energy of the Big Bang, the Cosmos was without form. There were no galaxies, no planets, no life. Deep, impenetrable darkness was everywhere, hydrogen atoms in the void. Here and there, denser accumulations of gas were imperceptibly growing, globes of matter were condensing-hydrogen raindrops more massive than suns. Within these globes of gas was kindled the nuclear fire latent in matter. A first generation of stars was born, flooding the Cosmos with light. There were in those times, not yet any planets to receive the light, no living creatures to admire the radiance of the heavens. Deep in the stellar furnaces, the alchemy of nuclear fusion created heavy elements from the ashes of hydrogen burning, the atomic building blocks of future planets and lifeforms. Massive stars soon exhausted their stores of nuclear fuel. Rocked by colossal explosions, they returned most of their substance back into the thin gas from which they had once condensed. Here in the dark lush clouds between the stars, new raindrops made of many elements were forming, later generation of stars being born. Nearby, smaller raindrops grew, bodies far too little to ignite the nuclear fire, droplets in the interstellar mist on their way to form planets. Among them was a small world of stone and iron, the early Earth. Congealing and warming, the Earth released methane, ammonia, water and hydrogen gases that had been trapped within, forming the primitive atmosphere and the first oceans. Starlight from the Sun bathed and warmed the primeval Earth, drove storms, generated lightning and thunder. Volcanoes overflowed with lava. These processes disrupted molecules of the primitive atmosphere; the fragments fell back together into more and more complex forms, which dissolved into the early oceans. After a while the seas achieved the consistency of a warm, dilute soup. Molecules were organized, and complex chemical reactions driven, on the surface of clay. And one day a molecule arose that quite by accident was able to make crude copies of itself out of the other molecules in the broth. As time passed, more elaborate and more accurate self replicating molecules arose. Those combinations best suited to further replication were favored by the sieve of natural selection. Those that copied better produced more copies. And the primitive oceanic broth gradually grew thin as it was consumed by and transformed into complex condensations of self replicating organic molecules. Gradually, imperceptibly, life had begun. Single-celled plants evolved, and life began generating its own food. Photosynthesis transformed the atmosphere. Sex was invented. Once free living forms bonded together to make a complex cell with specialized functions. Chemical receptors evolved, and the Cosmos could taste and smell. One celled organisms evolved into multicellular colonies, elaborating their various parts into specialized organ systems. Eyes and ears evolved, and now the Cosmos could see and hear. Plants and animals discovered that land could support life. Organisms buzzed, crawled, scuttled, lumbered, glided, flapped, shimmied, climbed and soared. Colossal beasts thundered through steaming jungles. Small creatures emerged, born live instead of in hard-shelled containers, with a fluid like the early ocean coursing through their veins. They survived by swiftness and cunning. And then, only a moment ago, some small arboreal animals scampered down from the trees. They became upright and taught themselves the use of tools, domesticated other animals, plants and fire, and devised language. The ash of stellar alchemy was now emerging into consciousness. At an ever-accelerating pace, it invented writing, cities, art and science, and sent spaceships to the planets and the stars. These are some of the things that hydrogen atoms do, given fifteen billion years of cosmic evolution.
Carl Sagan (Cosmos)
In this chapter we will look at the entire edifice of QFT. We will see that it is based on three simple principles. We will also list some of its achievements, including some new insights and understandings not previously mentioned. THE FOUNDATION QFT is an axiomatic theory that rests on a few basic assumptions. Everything you have learned so far, from the force of gravity to the spectrum of hydrogen, follows almost inevitably from these three basic principles. (To my knowledge, Julian Schwinger is the only person who has presented QFT in this axiomatic way, at least in the amazing courses he taught at Harvard University in the 1950's.) 1. The field principle. The first pillar is the assumption that nature is made of fields. These fields are embedded in what physicists call flat or Euclidean three-dimensional space-the kind of space that you intuitively believe in. Each field consists of a set of physical properties at every point of space, with equations that describe how these particles or field intensities influence each other and change with time. In QFT there are no particles, no round balls, no sharp edges. You should remember, however, that the idea of fields that permeate space is not intuitive. It eluded Newton, who could not accept action-at-a-distance. It wasn't until 1845 that Faraday, inspired by patterns of iron filings, first conceived of fields. The use of colors is my attempt to make the field picture more palatable. 2. The quantum principle (discetization). The quantum principle is the second pillar, following from Planck's 1900 proposal that EM fields are made up of discrete pieces. In QFT, all physical properties are treated as having discrete values. Even field strengths, whose values are continues, are regarded as the limit of increasingly finer discrete values. The principle of discretization was discovered experimentally in 1922 by Otto Stern and Walther Gerlach. Their experiment (Fig. 7-1) showed that the angular momentum (or spin) of the electron in a given direction can have only two values: +1/2 or -1/2 (Fig. 7-1). The principle of discretization leads to another important difference between quantum and classical fields: the principle of superposition. Because the angular momentum along a certain axis can only have discrete values (Fig. 7-1), this means that atoms whose angular momentum has been determined along a different axis are in a superposition of states defined by the axis of the magnet. This same superposition principle applies to quantum fields: the field intensity at a point can be a superposition of values. And just as interaction of the atom with a magnet "selects" one of the values with corresponding probabilities, so "measurement" of field intensity at a point will select one of the possible values with corresponding probability (see "Field Collapse" in Chapter 8). It is discretization and superposition that lead to Hilbert space as the mathematical language of QFT. 3. The relativity principle. There is one more fundamental assumption-that the field equations must be the same for all uniformly-moving observers. This is known as the Principle of Relativity, famously enunciated by Einstein in 1905 (see Appendix A). Relativistic invariance is built into QFT as the third pillar. QFT is the only theory that combines the relativity and quantum principles.
Rodney A. Brooks (Fields of Color: The theory that escaped Einstein)
Today is a trumpet to set the hounds baying. The past is a fox the hunters are flaying. Nothing unspoken goes without saying. Love's a casino where lovers risk playing. The future's a marker our hearts are prepaying. The future's a promise there's no guaranteeing. Today is a fire the field mice are fleeing. Love is a marriage of feeling and being. The past is a mirror for wishful sightseeing. Nothing goes missing without absenteeing. Nothing gets cloven except by dividing. The future is chosen by atoms colliding. The past's an elision forever eliding. Today is a fog bank in which I am hiding. Love is a burn forever debriding. Love's an ascent forever plateauing. Nothing is granted except by bestowing. Today is an anthem the cuckoos are crowing. The future's a convolute river onflowing. The past is a lawn the neighbor is mowing. The past is an answer not worth pursuing, Nothing gets done except by the doing. The future's a climax forever ensuing. Love is only won by wooing. Today is a truce between reaping and rueing.
Campbell McGrath (Nouns & Verbs: New and Selected Poems)
the effect of the observer on the quantum field causes reality to reorganize according to the observation. This means that a newly observed reality descends through the frequency levels below the quantum, becoming dense in material reality.23 The nonobserved information becomes “lost” if it doesn’t qualify as “real” or desirable to the observer. It is not eliminated; instead, the not-selected potential slips into a pocket of “elsewhere.” Conceivably, we can get it back. As Lloyd explains, we can access lost data by “flipping a qubit,” a code phrase that means we can apply a magnetic field to force energy to shift from one state to another.24 We have established that the subtle layer is atop the physical and that the etheric layer of subtle energies is magnetic in nature. Could it be that the information we cannot find—perhaps, the data that could make a sick person well—is lingering a plane above us? We’ve one more law to face: the third law of thermodynamics. Experiments with absolute zero provide a new perspective on it, one that coaxes an understanding of subtle energy. Absolute zero is the point at which particles have minimum energy, called zero-point energy. Researchers including Dr. Hal Puthoff have identified this zero-point energy with zero-point field, a mesh of light that encompasses all of reality. (This field is further explained in Part III.) This field of light is a vacuum state, but it is not empty; rather, it is a sea of electromagnetic energy, and possibly, virtual particles—ideas that can become real. Conceivably, energy should stand completely still at absolute zero, which would mean that information would become permanently imprisoned. Research on zero-point energy, however, reveals that nearing zero-point, atomic motion stops, but energy continues. This means that “lost information” is not really lost. Even when frozen, it continues to “vibrate” in the background. The pertinent questions are these: How do we “read” this background information? How do we apply it? These queries are similar to those we might ask about “hidden” information. How do we access suppressed but desirable data? The answers lie in learning about subtle structures, for these dwell at the interfaces between the concrete and the higher planes. Operate within the subtle structures, and you can shift a negative reality to a positive one, without losing energy in the process.
Cyndi Dale (The Subtle Body: An Encyclopedia of Your Energetic Anatomy)
MIT physicist Seth Lloyd supports the idea of other worldly portals in his book Programming the Universe. Quantum mechanics has proven that an electron is not only allowed to be in two places at once—it is required to be. Certain particles not only spin in two directions at the same time, but have to do so.21 At really high speeds, atoms require more information to describe their movements, and therefore they have more entropy.22 However, an observer affects the outcome of whatever he or she is observing. As explained in the book The Orb Project, the effect of the observer on the quantum field causes reality to reorganize according to the observation. This means that a newly observed reality descends through the frequency levels below the quantum, becoming dense in material reality.23 The nonobserved information becomes “lost” if it doesn’t qualify as “real” or desirable to the observer. It is not eliminated; instead, the not-selected potential slips into a pocket of “elsewhere.” Conceivably, we can get it back. As Lloyd explains, we can access lost data by “flipping a qubit,” a code phrase that means we can apply a magnetic field to force energy to shift from one state to another.24 We have established that the subtle layer is atop the physical and that the etheric layer of subtle energies is magnetic in nature. Could it be that the information we cannot find—perhaps, the data that could make a sick person well—is lingering a plane above us? We’ve one more law to face: the third law of thermodynamics. Experiments with absolute zero provide a new perspective on it, one that coaxes an understanding of subtle energy. Absolute zero is the point at which particles have minimum energy, called zero-point energy. Researchers including Dr. Hal Puthoff have identified this zero-point energy with zero-point field, a mesh of light that encompasses all of reality. (This field is further explained in Part III.) This field of light is a vacuum state, but it is not empty; rather, it is a sea of electromagnetic energy, and possibly, virtual particles—ideas that can become real. Conceivably, energy should stand completely still at absolute zero, which would mean that information would become permanently imprisoned. Research on zero-point energy, however, reveals that nearing zero-point, atomic motion stops, but energy continues. This means that “lost information” is not really lost. Even when frozen, it continues to “vibrate” in the background. The pertinent questions are these: How do we “read” this background information? How do we apply it? These queries are similar to those we might ask about “hidden” information. How do we access suppressed but desirable data? The answers lie in learning about subtle structures, for these dwell at the interfaces between the concrete and the higher planes. Operate within the subtle structures, and you can shift a negative reality to a positive one, without losing energy in the process.
Cyndi Dale (The Subtle Body: An Encyclopedia of Your Energetic Anatomy)
Intuitive information—unuttered, mind-locked data—does pass from person to person. Energy medicine is largely dependent upon a practitioner getting an image, gut sense, or inner messages that provide diagnostic and treatment insight. Edgar Cayce, a well-known American psychic, was shown to be 43 percent accurate in his intuitive diagnoses in a posthumous analysis made from 150 randomly selected cases.43 Medical doctor C. Norman Shealy tested now well-known intuitive Caroline Myss, who achieved 93 percent diagnostic accuracy when given only a patient’s name and birth date.44 Compare these statistics to those of modern Western medicine. A recent study published by Health Services Research found significant errors in diagnostics in reviewed cases in the 1970s to 1990s, ranging from 80 percent error rates to below 50 percent. Acknowledging that “diagnosis is an expression of probability,” the paper’s authors emphasized the importance of doctor-patient interaction in gathering data as a way to improve these rates.45 A field transfers information through a medium—even to the point that thought can produce a physical effect, thus suggesting that T-fields might even predate, or can at least be causative to, L-fields. One study, for example, showed that accomplished meditators were able to imprint their intentions on electrical devices. After they concentrated on the devices, which were then placed in a room for three months, these devices could create changes in the room, including affecting pH and temperature.46 Thought fields are most often compared to magnetic fields, for there must be an interconnection to generate a thought, such as two people who wish to connect. Following classical physics, the transfer of energy occurs between atoms or molecules in a higher (more excited) energy state and those in a lower energy state; and if both are equal, there can be an even exchange of information. If there really is thought transmission, however, it must be able to occur without any physical touch for it to be “thought” or magnetic in nature versus an aspect of electricity. Besides anecdotal evidence, there is scientific evidence of this possibility. In studying semiconductors, solid materials that have electrical conduction between a conductor and an insulator, noteworthy scientist Albert Szent-Györgyi, who won the Nobel Prize in 1937, discovered that all molecules forming the living matrix are semiconductors. Even more important, he observed that energies can flow through the electromagnetic field without touching each other.47 These ideas would support the theory that while L-fields provide the blueprints for the body, T-fields carry aspects of thought and potentially modify the L-fields, influencing or even overriding the L-field of the body.48
Cyndi Dale (The Subtle Body: An Encyclopedia of Your Energetic Anatomy)