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Showing posts with label Inspirational. Show all posts
Showing posts with label Inspirational. Show all posts

Tapping into Action and Motivation - Clearing Procrastination - EFT with Brad Yates

Falling for This Myth Could Give You Cancer - By Dr. Mercola



                         

How much control do you really have over your own life in general, and your health in particular? These questions have puzzled many since the beginning of time. Now, the emerging science of epigenetics is offering some answers that put true control within your reach.
According to some scientists, changing your health may be as "simple" as changing your thoughts and beliefs.
"Contrary to what many people are being led to believe, a lot of emphasis placed on genes determining human behavior is nothing but theory and doctrine," writes Konstantin Eriksen. "We are free to make decisions that impact our lives and those of others. … Our beliefs can change our biology. We have the power to heal ourselves, increase our feelings of self-worth and improve our emotional state."

Epigenetics Shatters "The Central Dogma"

Eriksen goes on to discuss something called "The Central Dogma" of molecular biology, which states that biological information is transferred sequentially and only in one direction (from DNA to RNA to proteins).
The ramification of buying into the central dogma is that it leads to belief in absolute determinism, which leaves you utterly powerless to do anything about the health of your body; it's all driven by your genetic code, which you were born with.
However, scientists have completely shattered this dogma and proven it false. You actually have a tremendous amount of control over how your genetic traits are expressed—from how you think to what you eat and the environment you live in.
You may recall the Human Genome Projectii , which was launched in 1990 and completed in 2003. The mission was to map out all human genes and their interactions, which would than serve as the basis for curing virtually any disease. Alas, not only did they realize the human body consists of far fewer genes than previously believed, they also discovered that these genes do not operate as previously predicted.
In the featured article, Eriksen describes the experiments of John Cairns, a British molecular biologist who in 1988 produced compelling evidence that our responses to our environment determine the expression of our genes. A radical thought, for sure, but one that has been proven correct on multiple occasions since then.
Eriksen writesiii :
"Cairns took bacteria whose genes did not allow them to produce lactase, the enzyme needed to digest milk sugar, and placed them in petri dishes where the only food present was lactase. Much to his astonishment, within a few days, all of the petri dishes had been colonized by the bacteria and they were eating lactose. The bacterial DNA had changed in response to its environment. This experiment has been replicated many times and they have not found a better explanation than this obvious fact – that even primitive organisms can evolve consciously.
So, information flows in both directions, from DNA to proteins and from proteins to DNA, contradicting the "central dogma." Genes can be activated and de-activated by signals from the environment. The consciousness of the cell is inside the cell's membrane. Each and every cell in our bodies has a type of consciousness. Genes change their expression depending on what is happening outside our cells and even outside our bodies."

Your Emotions Regulate Your Genetic Expression

As if genes changing expression in response to environmental factors such as nutrients wasn't enough, other researchers have demonstrated that this "environment" that your genes respond to also includes your conscious thoughts, emotions, and unconscious beliefs. Cellular biologist Bruce Lipton, PhD., is one of the leading authorities on how emotions can regulate genetic expression, which are explained in-depth in his excellent books The Biology of Belief, and Spontaneous Evolution.
Science has indeed taken us far beyond Newtonian physics, which says you live in a mechanical universe. According to this belief, your body is just a biological machine, so by modifying the parts of the machine, you can modify your health. Also, as a biological machine, your body is thought to respond to physical "things" like the active chemicals in drugs, and by adjusting the drugs that modify your machinery, doctors can modify and control health. However, with the advent of quantum physics, scientists have realized the flaws in Newtonian physics, as quantum physics shows us that the invisible, immaterial realm is actually far more important than the material realm. In fact, your thoughts may shape your environment far more than physical matter!
According to Dr. Lipton, the true secret to life does not lie within your DNA, but rather within the mechanisms of your cell membrane.
Each cell membrane has receptors that pick up various environmental signals, and this mechanism controls the "reading" of the genes inside your cells. Your cells can choose to read or not read the genetic blueprint depending on the signals being received from the environment. So having a "cancer program" in your DNA does not automatically mean you're destined to get cancer. Far from it. This genetic information does not ever have to be expressed...
What this all means is that you are not controlled by your genetic makeup. Instead, your genetic readout (which genes are turned "on" and which are turned "off") is primarily determined by your thoughts, attitudes, and perceptions!
The major problem with believing the myth that your genes control your life is that you become a victim of your heredity. Since you can't change your genes, it essentially means that your life is predetermined, and therefore you have very little control over your health. With any luck, modern medicine will find the gene responsible and be able to alter it, or devise some other form of drug to modify your body's chemistry, but aside from that, you're out of luck… The new science, however, reveals that your perceptions control your biology, and this places you in the driver's seat, because if you can change your perceptions, you can shape and direct your own genetic readout.
This new science also reveals that you are in fact an extension of your environment, which includes everything from your thoughts and belief systems, to toxic exposures and exposure to sunlight, exercise, and, of course, everything you choose to put onto and into your body. As Dr. Lipton is fond of saying, the new biology moves you out of victimhood and into Mastery—mastery over your own health.
It is a supreme confirmation of my favorite saying, "You Can Take Control of Your Health."

How Nutrition Alters Genetic Expression

Two years ago, a study performed by the Linus Pauling Institute at Oregon State University was showcased at the annual Experimental Biology convention. The study demonstrated how "histone modifications" can impact the expression of many degenerative diseases, ranging from cancer and heart disease to biopolar disorder and even aging itself. According to Rod Dashwood, a professor of environmental and molecular toxicology and head of LPI's Cancer Chemoprotection Program, as quoted in a press releaseiv:
"We believe that many diseases that have aberrant gene expression at their root can be linked to how DNA is packaged, and the actions of enzymes such as histone deacetylases, or HDACs. As recently as 10 years ago we knew almost nothing about HDAC dysregulation in cancer or other diseases, but it's now one of the most promising areas of health-related research."
In a nutshell, we all have tumor suppressor genes, and these genes are capable of stopping cancer cells in their tracks. These genes are present in every cell in your body, but so are proteins called "histones." As Dr. Jean-Pierre Issa at the M.D. Anderson Cancer Center explains, histones can "hug" DNA so tightly that it becomes "hidden from view for the cell." If a tumor suppressor gene is hidden, it cannot be utilized, and in this way too much histone will "turn off" these cancer suppressors, and allow cancer cells to proliferate.
Now here's where epigenetics comes in … certain foods, such as broccoli and other cruciferous vegetables, garlic, and onions contain substances that act as histone inhibitors, which essentially block the histone, allowing your tumor suppressor genes to activate and fight cancer. By regularly consuming these foods, you are naturally supporting your body's ability to fight tumors.
Certain alternative oncologists also tap directly into the epigenetic mechanism, such as Dr. Nicholas Gonzalez, who uses a three-pronged approach to cancer based primarily on nutrition and detoxification, and Dr. Stanislaw Burzynski, who treats cancer with a gene-targeted approach. His treatment uses non-toxic peptides and amino acids, known as antineoplastons, which act as genetic switches that turn your tumor suppressor genes "on."

A Healthy Lifestyle Supports Healthy Genetic Expression

So the good news is that you are in control of your genes … You can alter them on a regular basis, depending on the foods you eat, the air you breathe, and the thoughts you think. It's your environment and lifestyle that dictates your tendency to express disease, and this new realization is set to make major waves in the future of disease prevention -- including one day educating people on how to fight disease at the epigenetic level. When a disease occurs, the solution, according to epigenetic therapy, is simply to "remind" your affected cells (change its environmental instructions) of its healthy function, so they can go back to being normal cells instead of  diseased cells.
You can begin to do this on your own, long before you manifest a disease. By leading a healthy lifestyle, with high quality nutrition, exercise, limited exposure to toxins, and a positive mental attitude, you encourage your genes to express positive, disease-fighting behaviors.
This is what preventive medicine is all about. It's not about taking any one particular nutrient as a supplement to fix one specific "part" of your biological machinery... The more people become willing to embrace this simple truth, the healthier everyone will get.
It's also worth pointing out that epigenetic effects begin before birth.
Epigenetic research from 2009 showed that rat fetuses receiving poor nutrition in the womb become genetically primed for a nutrition-poor environment. As a result of this genetic adaptation, the rats tended to be smaller. They were also at higher risk for a host of health problems throughout their lives, such as diabetes, growth retardation, cardiovascular disease, obesity, and neurodevelopmental delays. Again, while some are tempted to blame such "predispositions" on bad genes, the KEY factor is nutrition, i.e. the cellular environment.
If you're ready to address your dietary choices, read through my comprehensive nutrition plan, which will give you tips and tools for eating healthy, dealing with stress, and living a lifestyle that will support your epigenetic health.
You can also turn your genes off and on with your emotions too. Many, if not most people carry emotional scars; traumas that can adversely affect health. Using techniques like energy psychology, you can go in and correct the trauma and help regulate your genetic expression. My favorite technique for this is the Emotional Freedom Technique (EFT), but there are many others. Choose whichever one appeals to you, and if you don't sense any benefits, try another, until you find what works best for you.
Please, remember that 'You CAN Take Control of Your Health.'

http://articles.mercola.com/sites/articles/archive/2012/04/11/epigenetic-vs-determinism.aspx 

Have We Been Interpreting Quantum Mechanics Wrong This Whole Time?

A droplet bouncing on the surface of a liquid has been found to exhibit many quantum-like properties, including double-slit interference, tunneling and energy quantization.
A droplet bouncing on the surface of a liquid has been found to exhibit many quantum-like properties, including double-slit interference, tunneling and energy quantization.  John Bush
For nearly a century, “reality” has been a murky concept. The laws of quantum physics seem to suggest that particles spend much of their time in a ghostly state, lacking even basic properties such as a definite location and instead existing everywhere and nowhere at once. Only when a particle is measured does it suddenly materialize, appearing to pick its position as if by a roll of the dice.

The experiments involve an oil droplet that bounces along the surface of a liquid. The droplet gently sloshes the liquid with every bounce. At the same time, ripples from past bounces affect its course. The droplet’s interaction with its own ripples, which form what’s known as a pilot wave, causes it to exhibit behaviors previously thought to be peculiar to elementary particles — including behaviors seen as evidence that these particles are spread through space like waves, without any specific location, until they are measured.This idea that nature is inherently probabilistic — that particles have no hard properties, only likelihoods, until they are observed — is directly implied by the standard equations of quantum mechanics. But now a set of surprising experiments with fluids has revived old skepticism about that worldview. The bizarre results are fueling interest in an almost forgotten version of quantum mechanics, one that never gave up the idea of a single, concrete reality.

Particles at the quantum scale seem to do things that human-scale objects do not do. They can tunnel through barriers, spontaneously arise or annihilate, and occupy discrete energy levels. This new body of research reveals that oil droplets, when guided by pilot waves, also exhibit these quantum-like features.
To some researchers, the experiments suggest that quantum objects are as definite as droplets, and that they too are guided by pilot waves — in this case, fluid-like undulations in space and time. These arguments have injected new life into a deterministic (as opposed to probabilistic) theory of the microscopic world first proposed, and rejected, at the birth of quantum mechanics.
“This is a classical system that exhibits behavior that people previously thought was exclusive to the quantum realm, and we can say why,” said John Bush, a professor of applied mathematics at the Massachusetts Institute of Technology who has led several recent bouncing-droplet experiments. “The more things we understand and can provide a physical rationale for, the more difficult it will be to defend the ‘quantum mechanics is magic’ perspective.”
Magical Measurements
The orthodox view of quantum mechanics, known as the “Copenhagen interpretation” after the home city of Danish physicist Niels Bohr, one of its architects, holds that particles play out all possible realities simultaneously. Each particle is represented by a “probability wave” weighting these various possibilities, and the wave collapses to a definite state only when the particle is measured. The equations of quantum mechanics do not address how a particle’s properties solidify at the moment of measurement, or how, at such moments, reality picks which form to take. But the calculations work. As Seth Lloyd, a quantum physicist at MIT, put it, “Quantum mechanics is just counterintuitive and we just have to suck it up.”
When light illuminates a pair of slits in a screen (top), the two overlapping wavefronts cooperate in some places and cancel out in between, producing an interference pattern. The pattern appears even when particles are shot toward the screen one by one (bottom), as if each particle passes through both slits at once, like a wave.
When light illuminates a pair of slits in a screen (top), the two overlapping wavefronts cooperate in some places and cancel out in between, producing an interference pattern. The pattern appears even when particles are shot toward the screen one by one (bottom), as if each particle passes through both slits at once, like a wave.  Akira Tonomura/Creative Commons
A classic experiment in quantum mechanics that seems to demonstrate the probabilistic nature of reality involves a beam of particles (such as electrons) propelled one by one toward a pair of slits in a screen. When no one keeps track of each electron’s trajectory, it seems to pass through both slits simultaneously. In time, the electron beam creates a wavelike interference pattern of bright and dark stripes on the other side of the screen. But when a detector is placed in front of one of the slits, its measurement causes the particles to lose their wavelike omnipresence, collapse into definite states, and travel through one slit or the other. The interference pattern vanishes. The great 20th-century physicist Richard Feynman said that this double-slit experiment “has in it the heart of quantum mechanics,” and “is impossible, absolutely impossible, to explain in any classical way.”
Some physicists now disagree. “Quantum mechanics is very successful; nobody’s claiming that it’s wrong,” said Paul Milewski, a professor of mathematics at the University of Bath in England who has devised computer models of bouncing-droplet dynamics. “What we believe is that there may be, in fact, some more fundamental reason why [quantum mechanics] looks the way it does.”
Riding Waves
The idea that pilot waves might explain the peculiarities of particles dates back to the early days of quantum mechanics. The French physicist Louis de Broglie presented the earliest version of pilot-wave theory at the 1927 Solvay Conference in Brussels, a famous gathering of the founders of the field. As de Broglie explained that day to Bohr, Albert Einstein, Erwin Schrödinger, Werner Heisenberg and two dozen other celebrated physicists, pilot-wave theory made all the same predictions as the probabilistic formulation of quantum mechanics (which wouldn’t be referred to as the “Copenhagen” interpretation until the 1950s), but without the ghostliness or mysterious collapse.
The probabilistic version, championed by Bohr, involves a single equation that represents likely and unlikely locations of particles as peaks and troughs of a wave. Bohr interpreted this probability-wave equation as a complete definition of the particle. But de Broglie urged his colleagues to use two equations: one describing a real, physical wave, and another tying the trajectory of an actual, concrete particle to the variables in that wave equation, as if the particle interacts with and is propelled by the wave rather than being defined by it.
For example, consider the double-slit experiment. In de Broglie’s pilot-wave picture, each electron passes through just one of the two slits, but is influenced by a pilot wave that splits and travels through both slits. Like flotsam in a current, the particle is drawn to the places where the two wavefronts cooperate, and does not go where they cancel out.
De Broglie could not predict the exact place where an individual particle would end up — just like Bohr’s version of events, pilot-wave theory predicts only the statistical distribution of outcomes, or the bright and dark stripes — but the two men interpreted this shortcoming differently. Bohr claimed that particles don’t have definite trajectories; de Broglie argued that they do, but that we can’t measure each particle’s initial position well enough to deduce its exact path.
In principle, however, the pilot-wave theory is deterministic: The future evolves dynamically from the past, so that, if the exact state of all the particles in the universe were known at a given instant, their states at all future times could be calculated.
At the Solvay conference, Einstein objected to a probabilistic universe, quipping, “God does not play dice,” but he seemed ambivalent about de Broglie’s alternative. Bohr told Einstein to “stop telling God what to do,” and (for reasons that remain in dispute) he won the day. By 1932, when the Hungarian-American mathematician John von Neumann claimed to have proven that the probabilistic wave equation in quantum mechanics could have no “hidden variables” (that is, missing components, such as de Broglie’s particle with its well-defined trajectory), pilot-wave theory was so poorly regarded that most physicists believed von Neumann’s proof without even reading a translation.
At the fifth Solvay Conference, a 1927 meeting of the founders of quantum mechanics, Louis de Broglie (middle row, third from right) argued for a deterministic formulation of quantum mechanics called pilot-wave theory. But a probabilistic version of the theory championed by Niels Bohr (middle row, far right) won the day.
At the fifth Solvay Conference, a 1927 meeting of the founders of quantum mechanics, Louis de Broglie (middle row, third from right) argued for a deterministic formulation of quantum mechanics called pilot-wave theory. But a probabilistic version of the theory championed by Niels Bohr (middle row, far right) won the day.
More than 30 years would pass before von Neumann’s proof was shown to be false, but by then the damage was done. The physicist David Bohm resurrected pilot-wave theory in a modified form in 1952, with Einstein’s encouragement, and made clear that it did work, but it never caught on. (The theory is also known as de Broglie-Bohm theory, or Bohmian mechanics.)
Later, the Northern Irish physicist John Stewart Bell went on to prove a seminal theorem that many physicists today misinterpret as rendering hidden variables impossible. But Bell supported pilot-wave theory. He was the one who pointed out the flaws in von Neumann’s original proof. And in 1986 he wrote that pilot-wave theory “seems to me so natural and simple, to resolve the wave-particle dilemma in such a clear and ordinary way, that it is a great mystery to me that it was so generally ignored.”
The neglect continues. A century down the line, the standard, probabilistic formulation of quantum mechanics has been combined with Einstein’s theory of special relativity and developed into the Standard Model, an elaborate and precise description of most of the particles and forces in the universe. Acclimating to the weirdness of quantum mechanics has become a physicists’ rite of passage. The old, deterministic alternative is not mentioned in most textbooks; most people in the field haven’t heard of it. Sheldon Goldstein, a professor of mathematics, physics and philosophy at Rutgers University and a supporter of pilot-wave theory, blames the “preposterous” neglect of the theory on “decades of indoctrination.” At this stage, Goldstein and several others noted, researchers risk their careers by questioning quantum orthodoxy.
A Quantum Drop
When a droplet bounces along the surface of a liquid toward a pair of openings in a barrier, it passes randomly through one opening or the other while its “pilot wave,” or the ripples on the liquid’s surface, passes through both. After many repeat runs, a quantum-like interference pattern appears in the distribution of droplet trajectories.
When a droplet bounces along the surface of a liquid toward a pair of openings in a barrier, it passes randomly through one opening or the other while its “pilot wave,” or the ripples on the liquid’s surface, passes through both. After many repeat runs, a quantum-like interference pattern appears in the distribution of droplet trajectories.  Yves Couder et al.
Now at last, pilot-wave theory may be experiencing a minor comeback — at least, among fluid dynamicists. “I wish that the people who were developing quantum mechanics at the beginning of last century had access to these experiments,” Milewski said. “Because then the whole history of quantum mechanics might be different.”
The experiments began a decade ago, when Yves Couder and colleagues at Paris Diderot University discovered that vibrating a silicon oil bath up and down at a particular frequency can induce a droplet to bounce along the surface. The droplet’s path, they found, was guided by the slanted contours of the liquid’s surface generated from the droplet’s own bounces — a mutual particle-wave interaction analogous to de Broglie’s pilot-wave concept.
In a groundbreaking experiment, the Paris researchers used the droplet setup to demonstrate single- and double-slit interference. They discovered that when a droplet bounces toward a pair of openings in a damlike barrier, it passes through only one slit or the other, while the pilot wave passes through both. Repeated trials show that the overlapping wavefronts of the pilot wave steer the droplets to certain places and never to locations in between — an apparent replication of the interference pattern in the quantum double-slit experiment that Feynman described as “impossible … to explain in any classical way.” And just as measuring the trajectories of particles seems to “collapse” their simultaneous realities, disturbing the pilot wave in the bouncing-droplet experiment destroys the interference pattern.
Droplets can also seem to “tunnel” through barriers, orbit each other in stable “bound states,” and exhibit properties analogous to quantum spin and electromagnetic attraction. When confined to circular areas called corrals, they form concentric rings analogous to the standing waves generated by electrons in quantum corrals. They even annihilate with subsurface bubbles, an effect reminiscent of the mutual destruction of matter and antimatter particles.
In each test, the droplet wends a chaotic path that, over time, builds up the same statistical distribution in the fluid system as that expected of particles at the quantum scale. But rather than resulting from indefiniteness or a lack of reality, these quantum-like effects are driven, according to the researchers, by “path memory.”Every bounce of the droplet leaves a mark in the form of ripples, and these ripples chaotically but deterministically influence the droplet’s future bounces and lead to quantum-like statistical outcomes. The more path memory a given fluid exhibits — that is, the less its ripples dissipate — the crisper and more quantum-like the statistics become. “Memory generates chaos, which we need to get the right probabilities,” Couder explained. “We see path memory clearly in our system. It doesn’t necessarily mean it exists in quantum objects, it just suggests it would be possible.”
The quantum statistics are apparent even when the droplets are subjected to external forces. In one recent test, Couder and his colleagues placed a magnet at the center of their oil bath and observed a magnetic ferrofluid droplet. Like an electron occupying fixed energy levels around a nucleus, the bouncing droplet adopted a discrete set of stable orbits around the magnet, each characterized by a set energy level and angular momentum. The “quantization” of these properties into discrete packets is usually understood as a defining feature of the quantum realm.
As a droplet wends a chaotic path around the liquid’s surface, it gradually builds up quantum-like statistics.
As a droplet wends a chaotic path around the liquid’s surface, it gradually builds up quantum-like statistics.  Harris et al., PRL (2013)
If space and time behave like a superfluid, or a fluid that experiences no dissipation at all, then path memory could conceivably give rise to the strange quantum phenomenon of entanglement — what Einstein referred to as “spooky action at a distance.” When two particles become entangled, a measurement of the state of one instantly affects that of the other. The entanglement holds even if the two particles are light-years apart.
In standard quantum mechanics, the effect is rationalized as the instantaneous collapse of the particles’ joint probability wave. But in the pilot-wave version of events, an interaction between two particles in a superfluid universe sets them on paths that stay correlated forever because the interaction permanently affects the contours of the superfluid. “As the particles move along, they feel the wave field generated by them in the past and all other particles in the past,” Bush explained. In other words, the ubiquity of the pilot wave “provides a mechanism for accounting for these nonlocal correlations.” Yet an experimental test of droplet entanglement remains a distant goal.
Subatomic Realities
Many of the fluid dynamicists involved in or familiar with the new research have become convinced that there is a classical, fluid explanation of quantum mechanics. “I think it’s all too much of a coincidence,” said Bush, who led a June workshop on the topic in Rio de Janeiro and is writing a review paper on the experiments for the Annual Review of Fluid Mechanics.
Quantum physicists tend to consider the findings less significant. After all, the fluid research does not provide direct evidence that pilot waves propel particles at the quantum scale. And a surprising analogy between electrons and oil droplets does not yield new and better calculations. “Personally, I think it has little to do with quantum mechanics,” said Gerard ’t Hooft, a Nobel Prize-winning particle physicist at Utrecht University in the Netherlands. He believes quantum theory is incomplete but dislikes pilot-wave theory.
Many working quantum physicists question the value of rebuilding their highly successful Standard Model from scratch. “I think the experiments are very clever and mind-expanding,” said Frank Wilczek, a professor of physics at MIT and a Nobel laureate, “but they take you only a few steps along what would have to be a very long road, going from a hypothetical classical underlying theory to the successful use of quantum mechanics as we know it.”
“This really is a very striking and visible manifestation of the pilot-wave phenomenon,” Lloyd said. “It’s mind-blowing — but it’s not going to replace actual quantum mechanics anytime soon.”
In its current, immature state, the pilot-wave formulation of quantum mechanics only describes simple interactions between matter and electromagnetic fields, according toDavid Wallace, a philosopher of physics at the University of Oxford in England, and cannot even capture the physics of an ordinary light bulb. “It is not by itself capable of representing very much physics,” Wallace said. “In my own view, this is the most severe problem for the theory, though, to be fair, it remains an active research area.”
Pilot-wave theory has the reputation of being more cumbersome than standard quantum mechanics. Some researchers said that the theory has trouble dealing with identical particles, and that it becomes unwieldy when describing multiparticle interactions. They also claimed that it combines less elegantly with special relativity. But other specialists in quantum mechanics disagreed or said the approach is simply under-researched. It may just be a matter of effort to recast the predictions of quantum mechanics in the pilot-wave language, said Anthony Leggett, a professor of physics at the University of Illinois, Urbana-Champaign, and a Nobel laureate. “Whether one thinks this is worth a lot of time and effort is a matter of personal taste,” he added. “Personally, I don’t.”
On the other hand, as Bohm argued in his 1952 paper, an alternative formulation of quantum mechanics might make the same predictions as the standard version at the quantum scale, but differ when it comes to smaller scales of nature. In the search for a unified theory of physics at all scales, “we could easily be kept on the wrong track for a long time by restricting ourselves to the usual interpretation of quantum theory,” Bohm wrote.
Some enthusiasts think the fluid approach could indeed be the key to resolving the long-standing conflict between quantum mechanics and Einstein’s theory of gravity, which clash at infinitesimal scales.
“The possibility exists that we can look for a unified theory of the Standard Model and gravity in terms of an underlying, superfluid substrate of reality,” said Ross Anderson, a computer scientist and mathematician at the University of Cambridge in England, and the co-author of a recent paper on the fluid-quantum analogy. In the future, Anderson and his collaborators plan to study the behavior of “rotons” (particle-like excitations) in superfluid helium as an even closer analog of this possible “superfluid model of reality.”
But at present, these connections with quantum gravity are speculative, and for young researchers, risky ideas. Bush, Couder and the other fluid dynamicists hope that their demonstrations of a growing number of quantum-like phenomena will make a deterministic, fluid picture of quantum mechanics increasingly convincing.
“With physicists it’s such a controversial thing, and people are pretty noncommittal at this stage,” Bush said. “We’re just forging ahead, and time will tell. The truth wins out in the end.”

http://www.wired.com/2014/06/the-new-quantum-reality/

How to Use the Law of Attraction

The law of attraction states that every positive or negative event that happened with you was attracted by you. Say that a special friend loaned you money when you didn't have any. You attracted that, even without your awareness of using the law. Say that teacher, classmate, client, or co-worker gave you a hard time during the day. You attracted that, too. Again, we are using the law every second of every day. You've even attracted reading this article! There are really only three basic steps: ask, believe, and receive. However, the point of this article is to break those three steps down into actions that you can do.

Steps

Image:Use the Law of Attraction Step 1.jpg
1
Relax your mind. Meditate for 5 to 10 minutes. Doing this will increase brain power and have your mind at that relaxed state. This step is optional but recommended.
Use the Law of Attraction Step 2.jpg

  1. 2
    Be sure about what you want and when you do decide don't doubt yourself.Remember that you're sending a request to the Universe which is created by thoughts and therefore responds to thoughts. Know exactly what it is that you want. If you're not clear/sure, the Universe will get an unclear frequency and will send you unwanted results. So be sure it is something you have strong enthusiasm for.
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    3
    Ask the Universe for it. Make your request. Send a picture of what you want to the Universe. The Universe will answer. See this thing as already yours. See How to Visualize. The more detailed your vision, the better. If you're wanting that Nintendo Wii, see yourself sitting down playing a game on it. See yourself feeling the controller, playing your favorite game(s), touching the console. If there's that person you have a crush on, see yourself walking with her/him, touching or caressing the person, or even kissing the person. You get the idea.
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    4
    Write your wish down. Start with "I am so happy and grateful now that..." and finish the sentence (or paragraph) telling the Universe what it is that you want. Write it in the present tense as if you have it right now. Avoid negation terms (see Warnings for more on this). Every day until your wish comes true, close your eyes and imagine your desire as if it's happening right now.
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    5
    Feel it. Feel the way you will now after receiving your wish. You must act, speak, and think as if you are receiving it now. This is actually the most important, powerful step in using the Law of Attraction because this is where it starts working, and sometimes if you do this you don't feel like you need it anymore because you FEEL like you already have it! and then the universe will manifest this thought and feeling and you will receive it.
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    6
    Show gratitude. Write down all the things the Universe has given you. Be thankful for what you already have and be thankful for all the things the Universe has given you. The Universe has done a lot of things for us. Paying the Universe back with some gratitude will motivate the Universe to do even more things and will draw more things into your life. If you were once bullied and that person stopped, that's one thing to be thankful for. If the person you're crushing on likes you back, or doesn't but she/he didn't send their lover out to hurt you, that's another thing to thank the Universe for. You should also thank the Universe for this process too. Showing gratitude will turbo boost the Universe to manifest your request faster.
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    7
    Trust the Universe. Imagine an alternate dimension that is almost exactly like the real world but whatever you truly desire comes true in an instant. See yourself in that dimension, where whatever you ask the Universe for comes to you in an instant. Don't look for what you asked for; this is where people tend to mess up. If you have to keep an eye out for an event that manifests your wish, it's only telling the Universe you don't have it and you will attract...not having it. Be patient. Don't get upset if these things don't happen immediately. Don't stress the "how" of things. Let the Universe do it for you. When you take the Universe's job of worrying about the "how", this says you're lacking faith and that you're telling the Universe what to do when the Universe has far greater knowledge and power than human mankind.
  7. Tips
  8. If your current reality is bad, try not to think too much about it. Most of the people pay attention to their current reality and attract the same. Focus on what you wish to experience instead. It works.
  9. Try this... if you experience an event that makes you so happy and overjoyed that you want to attract more into your life then try and remember your inner emotion you had (your heart beating faster/ stomach jumping) whatever it was try and replicate that by remembering the event and then if your vibrational energy is the same as you felt in that joyous moment then the it will manifest and you will attract it into your life.
  10. Have a vision board or a picture from a magazine to help you see and feel what you want, look at that picture everyday (better to do this in the morning since this will help you to feel better throughout the day), and focus on emitting happy feelings to the Universe.
  11. Focus as often as you can on what you DO want rather than on what you don't want. For example, if you are angry or upset about a war/conflict that has been going on, do your best to be 'pro-peace' rather than 'anti-war' - focus on the peace, and the kinds of solutions that you would like to see, instead of whatever it is that you do not like about the situation.
  12. Good feelings = good reality. Feel GOOD. Put on your favorite song, paint a picture, have fun with your pet, or think of someone or something that you love, something that makes you happy, and just shut your eyes and dwell on this. These can be called Frequency Shifters, so have a few up your sleeve. Different thoughts work for different situations, so think of a few now you can use later.
  13. An interesting fact: Even celebrities like Lady Gaga use the law of attraction, and many have experienced its success.

  14. Warning!

  15. If you want something to happen, such as you want a bike, don't just say I want that bike, believe you are going to get that bike. Instead of telling yourself you want the bike, envision yourself riding that bike. It doesn't matter whether or not you know when your going to receive it, just believe you're going to get it and have no doubts about it. If you have any doubts, quickly change your thought pattern to the positive and focus on receiving or having what you want.
  16. Avoid using those negation terms. For example, if you want to get out of debt and you say "I want to get out of debt," the Universe only see the word 'debt' and will send more along your way. It pays no attention to negation terms like, 'no', 'not', 'none', 'out' and so forth. Instead say "I am in rich/wealthy have lots of money."
  17. You can't have any resistance in your mind for example: if you have just tried using the law of attraction and you say "this stuff isn't working" then the universe will give you more of 'this isn't working.'
  18. If you are constantly worried about bad things happening, or negative outcomes, then you are using the law of attraction AGAINST yourself. To worry is really to apply most of the above steps, towards a NEGATIVE outcome. You are visualizing the negative outcome and asking the universe for it with pictures of the negative outcome, you are feeling the feelings of the negative outcome ... Stop Worrying and follow step seven above.
  19. "Be careful what you wish for because you just may get it," is not a statement to joke around with. This law is so powerful your request could manifest instantly and powerfully without warning. Remember, this Law could be used to create or destroy.
  20. You can't use the Law of Attraction to control people. However, if you have a friend who you haven't seen in a long time and you want her to come to you. Instead of saying "I want my friend to show up at my door," just say, "I want to walk down the street and see her pass by," or something like that.
http://www.wikihow.com/Use-the-Law-of-Attraction
 
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