Saturday, April 3, 2010

NANOTECHNOLOGY

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Nanotechnology, shortened to "nanotech", is the study of the control of matter on an atomic and molecular scale. Generally nanotechnology deals with structures of the size 100 nanometers or smaller, and involves developing materials or devices within that size. Nanotechnology is very diverse, ranging from novel extensions of conventional device physics, to completely new approaches based upon molecular self-assembly, to developing new materials with dimensions on the nanoscale, even to speculation on whether we can directly control matter on the atomic scale.
Scientists and engineers are collaborating across disciplines to develop and network miniaturized intelligent nanosensors that can rapidly and remotely detect change in their surroundings. These sensors have a wide range of potential applications: environmental, medical, military and transportation. This workshop will focus on revealing the chemistry and physics behind the creation and application of these sensors. Series: "Molecules for the Media"


The truth about Nanotechnology

A concise introduction to what NT is, what it can't do yet and what we should be aware of Nanotechnology marks the merger of different technologies in structures smaller than 100 nm. While it could yield some powerful applications for sustainability, medicine and electronics, some hazards begin to appear that have to be addressed urgently






Watch The truth about Nanotechnology in Educational | View More Free Videos Online at Veoh.com




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Physics, Metaphysics & the Consciousness Connection

brain
Physicist and consciousness researcher, Thomas Campbell-His book "My Big TOE, written by a nuclear physicist in the language of contemporary Western culture, unifies science and philosophy, physics and metaphysics, mind and matter, purpose and meaning, the normal and the paranormal. The entirety of human experience (mind, body, and spirit) including both our objective and subjective worlds, are brought together under one seamless scientific understanding. Heres a lecture..


Watch Physics, Metaphysics & the Consciousness Connection in Educational | View More Free Videos Online at Veoh.com

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Outer Space Exposure

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  Written by Alan Bellows on 17 July 2008

In scores of science fiction stories, hapless adventurers find themselves unwittingly introduced to the vacuum of space without proper protection. There is often an alarming cacophony of screams and gasps as the increasingly bloated humans writhe and spasm. Their exposed veins and eyeballs soon bulge in what is clearly a disagreeable manner. The ill-fated adventurers rapidly swell like over-inflated balloons, ultimately bursting in a gruesome spray of blood.
As is true with many subjects, this representation in popular culture does not reflect the reality of exposure to outer space. Ever since humanity first began to probe outside of our protective atmosphere, a number of live organisms have been exposed to vacuum, both deliberately and otherwise. By combining these experiences with our knowledge of outer space, scientists have a pretty clear idea of what would happen if an unprotected human slipped into the cold, airless void.

In the 1960s, as technology was bringing the prospect of manned spaceflight into reality, engineers recognized the importance of determining the amount of time astronauts would have to react to integrity breaches such as a damaged spacecraft or punctured space-suits. To that end, NASA constructed an assortment of large altitude chambers to mimic the hostile environments found at varying distances above the Earth, accounting for factors such as air pressure, temperature, and radiation. Adventurous volunteers were subjected to simulations of the conditions found several miles up, and a handful of animal tests were conducted with even lower pressures.
Using the data from these experiments and their knowledge of outer space, scientists were able to make some reasonable conclusions about how the human body would respond to sudden depressurization. A series of accidents over the years proved most of their extrapolations to be accurate. In 1965, in a space-suit test gone awry, a technician in an altitude chamber was exposed to a hard vacuum. The defective suit was unable to hold pressure, and the man collapsed after fourteen seconds. He regained consciousness shortly after the chamber was repressurized, and he was uninjured. In a later incident, another technician spent four minutes trapped at low pressure by a malfunctioning altitude chamber. He lost consciousness and began to turn blue, but escaped death when one of the managers kicked in one of the machine’s glass gauges, allowing air to seep into the chamber.
A Soviet Soyuz spacecraftArtist’s rendering of a Soviet Soyuz spacecraftIn 1971, three Russian cosmonauts aboard an early Soyuz spacecraft tragically experienced the vacuum of space first-hand, as described in the Almanac of Soviet Manned Space Flight:
“…the orbital module was normally separated by 12 pyrotechnic devices which were supposed to fire sequentially, but they incorrectly fired simultaneously, and this caused a ball joint in the capsule’s pressure equalization valve to unseat, allowing air to escape. The valve normally opens at low altitude to equalize cabin air pressure to the outside air pressure. This caused the cabin to lose all its atmosphere in about 30 seconds while still at a height of 168 km. In seconds, Patsayev realized the problem and unstrapped from his seat to try and cover the valve inlet and shut off the valve but there was little time left. It would take 60 seconds to shut off the valve manually and Patsayev managed to half close it before passing out. Dobrovolsky and Volkov were virtually powerless to help since they were strapped in their seats, with little room to move in the small capsule and no real way to assist Patsayev. The men died shortly after passing out. [...] The rest of the descent was normal and the capsule landed at 2:17 AM. The recovery forces located the capsule and opened the hatch only to find the cosmonauts motionless in their seats. On first glance they appeared to be asleep, but closer examination showed why there was no normal communication from the capsule during descent.”
When the human body is suddenly exposed to the vacuum of space, a number of injuries begin to occur immediately. Though they are relatively minor at first, they accumulate rapidly into a life-threatening combination. The first effect is the expansion of gases within the lungs and digestive tract due to the reduction of external pressure. A victim of explosive decompression greatly increases their chances of survival simply by exhaling within the first few seconds, otherwise death is likely to occur once the lungs rupture and spill bubbles of air into the circulatory system. Such a life-saving exhalation might be due to a shout of surprise, though it would naturally go unheard where there is no air to carry it.
In the absence of atmospheric pressure water will spontaneously convert into vapor, which would cause the moisture in a victim’s mouth and eyes to quickly boil away. The same effect would cause water in the muscles and soft tissues of the body to evaporate, prompting some parts of the body to swell to twice their usual size after a few moments. This bloating may result in some superficial bruising due to broken capillaries, but it would not be sufficient to break the skin.
A NASA vacuum chamberA NASA altitude chamberWithin seconds the reduced pressure would cause the nitrogen which is dissolved in the blood to form gaseous bubbles, a painful condition known to divers as “the bends.” Direct exposure to the sun’s ultraviolet radiation would also cause a severe sunburn to any unprotected skin. Heat does not transfer out of the body very rapidly in the absence of a medium such as air or water, so freezing to death is not an immediate risk in outer space despite the extreme cold.
For about ten full seconds– a long time to be loitering in space without protection– an average human would be rather uncomfortable, but they would still have their wits about them. Depending on the nature of the decompression, this may give a victim sufficient time to take measures to save their own life. But this period of “useful consciousness” would wane as the effects of brain asphyxiation begin to set in. In the absence of air pressure the gas exchange of the lungs works in reverse, dumping oxygen out of the blood and accelerating the oxygen-starved state known as hypoxia. After about ten seconds a victim will experience loss of vision and impaired judgement, and the cooling effect of evaporation will lower the temperature in the victim’s mouth and nose to near-freezing. Unconsciousness and convulsions would follow several seconds later, and a blue discoloration of the skin called cyanosis would become evident.
At this point the victim would be floating in a blue, bloated, unresponsive stupor, but their brain would remain undamaged and their heart would continue to beat. If pressurized oxygen is administered within about one and a half minutes, a person in such a state is likely make a complete recovery with only minor injuries, though the hypoxia-induced blindness may not pass for some time. Without intervention in those first ninety seconds, the blood pressure would fall sufficiently that the blood itself would begin to boil, and the heart would stop beating. There are no recorded instances of successful resuscitation beyond that threshold.
Though an unprotected human would not long survive in the clutches of outer space, it is remarkable that survival times can be measured in minutes rather than seconds, and that one could endure such an inhospitable environment for almost two minutes without suffering any irreversible damage. The human body is indeed a resilient machine.





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TV warping minds

Solitude contributes to a person's imagined intimacy with a TV character
(PhysOrg.com) -- If your best friend is a guy from "The Office" or a young doctor on "Grey's Anatomy," you may be relying too much on TV shows to fill a social void in your life.
A new study from the University of Michigan says lonely people may use television characters to cope with solitude and to feel a sense of belonging.
The study examines how social and emotional tendencies—social inclusion needs and solitude experiences—are related to people's imagined with characters and emotional connection with television programs.
"Media programs are, after all, inherently social and may offer individuals a soothing if temporary replacement for genuine social interaction," said Dara Greenwood, assistant professor of communications studies who co-authored the study with Christopher Long, an assistant professor of psychology at Ouachita Baptist University.
More than 300 participants completed a questionnaire that looked at how the need to belong and different experiences of solitude (such as inspiring self-discovery, diversionary activities, or loneliness) contributed to increased emotional connection to TV characters and programs.
Solitude was defined for participants as time spent alone—or, if in the presence of others, without any . Participants rated the frequency with which they experienced different types of solitude as well as the importance they placed on these experiences.
After participants identified a favorite character or personality and the show they are featured on, they responded to 15 items to determine what imagined friendship and for a media persona. Items include "My favorite TV personality seems to understand the things I know," and "My favorite TV personality keeps me company when his or her program is on television."


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Results showed that increased affiliation needs (e.g., "I try hard not to do things that will make other people avoid or reject me") and lonely solitude experiences predicted increased emotional involvement with media characters. Engaging more intensely with media may be one way that individuals with unmet intimacy goals cope with loneliness, the research indicated.
Solitude experienced as self-discovery also predicted increased involvement with TV characters and programs.
"This underscores the emotional versatility of entertainment media and suggests that the alternative realities of movies or television programs may provide opportunities for imaginative and emotional processing that facilitate personal growth," she said.
This study found that, not surprisingly, the most popular characters were drawn from successful TV programs like "Grey's Anatomy" and "The Office." Most participants (218 people) selected fictional characters; the next most frequently chosen characters were real people, such as Oprah, reality show participants, and Jon Stewart (53 people); followed by cartoon characters (20 people).
"However, there may be a downside to this kind of attachment if the viewer in question idealizes the character and consequently holds her or himself up to unrealistic standards of physical attractiveness, romantic, or professional success," said Greenwood, whose research focuses on emotional well-being and media involvement and on young women's media affinities and self/body image.
Future research will continue investigating the conditions under which media involvement may be more or less beneficial to emotional well-being over the short and long term.
The findings appear in the current issue of Communication Research.

how TV works..




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Holographic Universe

Moving toward the Consciousness [Prime Mover] The Holographic Universe is a book by Michael Coleman Talbot exploring the idea that the universe is a hologram. After examining the work of physicist David Bohm and neurophysiologist Karl Pribram, both of whom independently arrived at holographic theories or models of the universe, the book argues that a holographic model could explain various paranormal and anomalous phenomena, and provide a basis for mystical experience. https://blogger.googleusercontent.com/img/b/R29vZ2xl/AVvXsEjOaRz7mWyhwqKvO78D0-6m3dP9hUqmoPLf_TH8DS_kdjH12-g_mLU_qfvJ3VUnpaUaomLnb44upi2QhHJw3dXNhzvbgE5lUPIgLJFDIznOwVcPn2ir7QxsSJ2_5gMOIOWi1oac-sdCZ5M/s400/mandelbrot-galaxy-holographic.jpg Gregg Braden discusses the Holographic Nature of the Universe, and how everything we do affects the collective conciousneess of us all.
Almost universally, ancient texts and traditions say to us, in the language of their time, that we are part of all that we see, that we are related through a Force to the events of our world, to one another, to the processes within our bodies and the Cosmos and beyond. In our most sacred traditions, this Force is described as all-powerful, something that permeates all of Creation. It's not "out there" somewhere. It is a part of ourselves as well as a part of all that we perceive.

Now Western science, beginning in about 1993, through accredited academic and scientific institutions, has performed experiments with unexpected — and in some cases very surprising — results, experiments demonstrating that the ancient tenets appear to be true. In these experiments, the only way that the curious and bizarre behavior of nature and particles in the subatomic world, the quantum world, could be explained was if those particles were all connected through a previouisly unrecognized Force.

So what's happening right now, in the early years of the 21st Century, is that Western science is moving toward accepting the ancient idea of this unity field that links all of Creation.

Some scientists are calling this field Nature's Mind. Some scientists are calling it the Mind of God (a famous name given to it by Stephen Hawking in his book A Brief History of Time.) Many researchers now are calling it the Quantum Hologram




david icke: "We Are Infinite Consciousness Living In A Holographic Illusion"


'In a holographic universe, even time and space could no longer be viewed as fundamentals. Because concepts such as location break down in a universe in which nothing is truly separate from anything else, time and three-dimensional space, like the images of the fish on the TV monitors, would also have to be viewed as projections of this deeper order.




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