Showing posts with label NASA. Show all posts
Showing posts with label NASA. Show all posts

Thursday, July 10, 2014

Collapse of civilisation is coming - Nasa study - article, pics - make sure you share what you have, live in nature and grow your own vegetables!


Collapse of civilisation is coming - Nasa study

The end of modern civilisation is coming, according to a Nasa-funded scientific study. Photo / Thinkstock
The end of modern civilisation is coming, according to a Nasa-funded scientific study. Photo / Thinkstock
Modern civilisation is heading for collapse within a matter of decades because of growing economic instability and pressure on the planet's resources, according to a scientific study funded by Nasa.
Using theoretical models to predict what will happen to the industrialised world over the course of the next century or so, mathematicians found that even with conservative estimates things started to go very badly, very quickly.
Referring to the past collapses of often very sophisticated civilisations - the Roman, Han and Gupta Empires for example - the study noted that the elite of society have often pushed for a "business as usual" approach to warnings of disaster until it is too late.
In the report based on his "Human And Nature Dynamical" (Handy) model, the applied mathematician Safa Motesharri wrote: "the process of rise-and-collapse is actually a recurrent cycle found throughout history".
His research, carried out with the help of a team of natural and social scientists and with funding from Nasa's Goddard Space Flight Center, has been accepted for publication in the Ecological Economics journal, the Guardian reported.
Motesharri explored the factors which could lead to the collapse of civilisation, from population growth to climate change, and found that when these converge they can cause society to break down because of the "stretching of resources" and "the economic stratification of society into 'Elites' and 'Masses'".
Using his Handy model to assess a scenario closely resembling the current state of the world, Motesharri found that civilisation "appears to be on a sustainable path for quite a long time, but even using an optimal depletion rate and starting with a very small number of Elites, the Elites eventually consume too much, resulting in a famine among the Masses that eventually causes the collapse of society".
The report stressed, however, that the worst-case scenario of collapse is not inevitable, and called on action now from the so-called real world "Elites" to restore economic balance.
"Collapse can be avoided and population can reach equilibrium if the per capita rate of depletion of nature is reduced to a sustainable level, and if resources are distributed in a reasonably equitable fashion," the scientists said.
This is not the first time scientists have tried to warn us of potentially impending global disaster. Last year it emerged that Stephen Hawking and a team of Britain's finest minds are drawing up a "doomsday list" of the catastrophic low-risk (but high-impact) events that could devastate the world.
- UK Indepdendent

Tuesday, December 17, 2013

Sun will flip upside down within weeks - NASA scientists report - read on...


Sun will 'flip upside down' within weeks - scientists

The Sun is set to switch polarity within weeks. Photo / Thinkstock
The Sun is set to switch polarity within weeks. Photo / Thinkstock
The sun is set to "flip upside down" within weeks as its magnetic field reverses polarity in an event that will send ripple effects throughout the solar system.
Although it may sound like a catastrophic occurrence, there's no need to run for cover. The sun switches its polarity, flipping its magnetic north and south, once every eleven years through an internal mechanism about which little is understood.
The swap could however cause intergalactic weather fronts such as geomagnetic storms, which can interfere with satellites and cause radio blackouts.
Nasa said in August that the change would happen in three to four months time, but it is impossible to give a more specific date. Scientist won't know for around another three weeks whether the flip is complete.
The impact of the transfer will be widespread as the sun's magnetic field exerts influence well beyond Pluto, past Nasa's Voyager probes positioned near the edge of interstellar space.
Video
The event will be watched closely by researchers at Stanford University's Wilcox Solar Observatory, which monitors the sun's magnetic field on a daily basis.
Todd Hoeksema, director of the Wilcox Solar Observatory, said the polarity change is built up throughout the eleven year cycle through areas of intense magnetic activity known as sunspots which gradually move towards the poles, eroding the existing opposite polarity.
Eventually, the magnetic field reduces to zero, before rebounding with the opposite polarity. "It's kind of like a tide coming in or going out," Hoeksema said. "Each little wave brings a little more water in, and eventually you get to the full reversal."
One of the most noticeable effect on Earth will be a boost in the occurrence, range and visibility of auroras - the Northern Lights. "It's not a catastrophic event, it's a large scale event that has some real implications, but its not something we need to worry about," added Hoeksema.
- UK Independent

Saturday, December 14, 2013

How NASA might build its very first warp drive


How NASA might build its very first warp drive

How NASA might build its very first warp drive
A few months ago, physicist Harold White stunned the aeronautics world when he announced that he and his team at NASA had begun work on the development of a faster-than-light warp drive. His proposed design, an ingenious re-imagining of an Alcubierre Drive, may eventually result in an engine that can transport a spacecraft to the nearest star in a matter of weeks — and all without violating Einstein's law of relativity. We contacted White at NASA and asked him to explain how this real life warp drive could actually work.
The above image of a Vulcan command ship features a warp engine similar to an Alcubierre Drive. Image courtesy CBS.

The Alcubierre Drive

The idea came to White while he was considering a rather remarkable equation formulated by physicist Miguel Alcubierre. In his 1994 paper titled, "The Warp Drive: Hyper-Fast Travel Within General Relativity," Alcubierre suggested a mechanism by which space-time could be "warped" both in front of and behind a spacecraft.
How NASA might build its very first warp driveSEXPAND
Michio Kaku dubbed Alcubierre's notion a "passport to the universe." It takes advantage of a quirk in the cosmological code that allows for the expansion and contraction of space-time, and could allow for hyper-fast travel between interstellar destinations. Essentially, the empty space behind a starship would be made to expand rapidly, pushing the craft in a forward direction — passengers would perceive it as movement despite the complete lack of acceleration.
White speculates that such a drive could result in "speeds" that could take a spacecraft to Alpha Centauri in a mere two weeks — even though the system is 4.3 light-years away.
How NASA might build its very first warp driveSEXPAND
In terms of the engine's mechanics, a spheroid object would be placed between two regions of space-time (one expanding and one contracting). A "warp bubble" would then be generated that moves space-timearound the object, effectively repositioning it — the end result being faster-than-light travel without the spheroid (or spacecraft) having to move with respect to its local frame of reference.
"Remember, nothing locally exceeds the speed of light, but space can expand and contract at any speed," White told io9. "However, space-time is really stiff, so to create the expansion and contraction effect in a useful manner in order for us to reach interstellar destinations in reasonable time periods would require a lot of energy."
And indeed, early assessments published in the ensuing scientific literature suggested horrific amounts of energy — basically equal to the mass-energy of the planet Jupiter (what is 1.9 × 1027kilograms or 317 Earth masses). As a result, the idea was brushed aside as being far too impractical. Even though nature allowed for a warp drive, it looked like we would never be able to build one ourselves.
"However," said White, "based on the analysis I did the last 18 months, there may be hope." The key, says White, may be in altering the geometry of the warp drive itself.

A new design

In October of last year, White was preparing for a talk he was to give for the kickoff to the 100 Year Starship project in Orlando, Florida. As he was pulling together his overview on space warp, he performed a sensitivity analysis for the field equations, more out of curiosity than anything else.
How NASA might build its very first warp driveSEXPAND
"My early results suggested I had discovered something that was in the math all along," he recalled. "I suddenly realized that if you made the thickness of the negative vacuum energy ring larger — like shifting from a belt shape to a donut shape — and oscillate the warp bubble, you can greatly reduce the energy required — perhaps making the idea plausible." White had adjusted the shape of Alcubierre's ring which surrounded the spheroid from something that was a flat halo to something that was thicker and curvier.
He presented the results of his Alcubierre Drive rethink a year later at the 100 Year Starship conference in Atlanta where he highlighted his new optimization approaches — a new design that could significantly reduce the amount of exotic matter required. And in fact, White says that the warp drive could be powered by a mass that's even less than that of the Voyager 1 spacecraft.
That's a significant change in calculations to say the least. The reduction in mass from a Jupiter-sized planet to an object that weighs a mere 1,600 pounds has completely reset White's sense of plausibility — and NASA's.

Hitting the lab

Theoretical plausibility is all fine and well, of course. What White needs now is a real-world proof-of-concept. So he's hit the lab and begun work on actual experiments.
"We're utilizing a modified Michelson-Morley interferometer — that allows us to measure microscopic perturbations in space time," he said. "In our case, we're attempting to make one of the legs of the interferometer appear to be a different length when we energize our test devices." White and his colleagues are trying to simulate the tweaked Alcubierre drive in miniature by using lasers to perturb space-time by one part in 10 million.
Of course, the interferometer isn't something that NASA would bolt onto a spaceship. Rather, it's part of a larger scientific pursuit.
"Our initial test device is implementing a ring of large potential energy — what we observe as blue shifted relative to the lab frame — by utilizing a ring of ceramic capacitors that are charged to tens of thousands of volts," he told us. "We will increase the fidelity of our test devices and continue to enhance the sensitivity of the warp field interferometer — eventually using devices to directly generate negative vacuum energy."
He points out that Casimir cavities, physical forces that arise from a quantized field, may represent a viable approach.
And it's through these experiments, hopes White, that NASA can go from the theoretical to the practical.

Waiting for that "Chicago Pile" moment

Given just how fantastic this all appears, we asked White if he truly thinks a warp-generating spacecraft might someday be constructed.
"Mathematically, the field equations predict that this is possible, but it remains to be seen if we could ever reduce this to practice."
How NASA might build its very first warp driveSEXPAND
What White is waiting for is existence of proof — what he's calling a "Chicago Pile" moment — a reference to a great practical example.
"In late 1942, humanity activated the first nuclear reactor in Chicago generating a whopping half Watt — not enough to power a light bulb," he said. "However, just under one year later, we activated a ~4MW reactor which is enough to power a small town. Existence proof is important."
His cautious approach notwithstanding, White did admit that a real-world warp drive could create some fascinating possibilities for space travel — and would certainly reset our sense of the vastness of the cosmos.
"This loophole in general relativity would allow us to go places really fast as measured by both Earth observers, and observers on the ship — trips measured in weeks or months as opposed to decades and centuries," he said.
But for now, pursuit of this idea is very much in science mode. "I'm not ready to discuss much beyond the math and very controlled modest approaches in the lab," he said.
Which makes complete sense to us, as well. But thanks to these preliminary efforts, White has already done much to instill a renewed sense of hope and excitement over the possibilities. Faster-than-light travel may await us yet.


Monday, September 30, 2013

NASA plans first 3D printer space launch in 2014!

Cygnus cargo ship docking with International Space Station

Nasa plans first 3D printer space launch in 2014

3D printing in the International Space Station could reduce the cost and frequency of resupply missions

Related Stories

US space agency Nasa is planning to launch a 3D printer into space next year to help astronauts manufacture spare parts and tools in zero gravity.
It will be the first time a 3D printer has been used in space and could help reduce the costs of future missions.
The device will have to withstand lift-off vibrations and operate safely in an enclosed space station environment.
Nasa has chosen technology start-up Made in Space to make the microwave oven-sized printer.
"Imagine an astronaut needing to make a life-or-death repair on the International Space Station," said Aaron Kemmer, the company's chief executive.
"Rather than hoping that the necessary parts and tools are on the station already, what if the parts could be 3D printed when they needed them?"
In 1970, Apollo 13 astronauts had to cobble together a home-made carbon dioxide filter using a plastic bag, a manual cover and gaffer tape.
Made in Space scientists work on the 3D printer prototype Made in Space scientists work on the 3D printer prototype
A 3D printer might have solved the problem in minutes.
"If you want to be adaptable, you have to be able to design and manufacture on the fly, and that's where 3D printing in space comes in,'' said Dave Korsmeyer, director of engineering at Nasa's Ames Research Center.
Nasa is also experimenting with 3D printing small satellites that could be launched from the International Space Station and then transmit data to earth.
Additive manufacturing, as 3D printing is also known, builds up objects layer by layer, commonly using polymer materials.
But laser-melted titanium and nickel-chromium powders are now being used to build much stronger components.
In August, Nasa successfully tested a metal 3D printed rocket component as part of its drive to reduce the costs of space exploration.