Saturday, February 13, 2010

Climate ‘tipping points’ may arrive without warning: Study


13 FEB 2010
A drought-hit village near Allahabad. Scientists feel global climate change is already causing major environmental effects, such as droughts, heat waves and rising sea level.
A drought-hit village near Allahabad.,Scientists feel global climate change is already causing major environmental effects, such as droughts, heat waves and rising sea level.
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It is harder than experts thought to predict when sudden shifts in earth’s natural systems will occur, a new study has claimed.
Researchers at University of California, Davis, said many scientists are looking for the warning signs that herald sudden changes in natural systems, in hopes of forestalling those changes or improving our preparations for them but unfortunately that regime shifts can happen without warning.
“It is harder than thought to predict when sudden shifts in earth’s natural systems will occur. Our new study found, unfortunately, that regime shifts with potentially large consequences can happen without warning — systems can tip precipitously,” senior author Alan Hastings said.
Mr. Hastings said, “This means that some effects of global climate change on ecosystems can be seen only once the effects are dramatic. By that point returning the system to a desirable state will be difficult, if not impossible.”
The current study focuses on models from ecology, but its findings may be applicable to other complex systems, especially ones involving human dynamics such as harvesting of fish stocks or financial markets.
The team led by Mr. Hastings, one of the world’s top experts, is using mathematical models (sets of equations) to understand natural systems, theScience Daily reported.
Scientists widely agree that global climate change is already causing major environmental effects, such as droughts, heat waves and rising sea level and they fear that worse is in store.

Project Smile India :)

Tuesday, February 9, 2010

Pollution control: India ranks 123rd



WASHINGTON: India and China rank 123rd and 121st in pollution control respectively, reflecting the strain environment, according to the 2010 Environmental Performance Index (EPI).
However, among the other newly industrialised nations Brazil and Russia rank 62nd and 69th, suggesting that the level of development is just one of many factors affecting pollution control.
Iceland leads the world in addressing pollution control and natural resource management challenges, according to the index produced by a team of environmental experts at Yale University and Columbia University.
Presented Thursday at the World Economic Forum Annual Meeting 2010, the EPI ranks 163 countries on their performance across 25 metrics aggregated into ten categories including environmental health, air quality, water resource management, biodiversity and habitat, forestry, fisheries, agriculture, and climate change.
Iceland’s top-notch performance derives from its high scores on environmental public health, controlling greenhouse gas emissions, and reforestation, according to a media release from Yale University. Other high performers include Switzerland, Costa Rica, Sweden, and Norway.

Saturday, February 6, 2010

www.SaveOurTigers.com








          



Quote of the Day

Limitations live only in our minds. But if we use our imaginations, our possibilities become limitless."
- Asam Bangia's Blog

Sunday, January 31, 2010

Gandhi still inspires; youths observe fast against Bt Brinjal at Jantar Mantar

Date      : 30th Jan 2010
Location:  Jantar Mantar, CP,New Delhi, INDIA






Around 50 youths in the Capital sought to follow Mahatma Gandhi's footsteps on Martyrs' Day by observing one-day fast to protest the introduction of Bt Brinjal in India and protect country's food sovereignty.

These youths, who were also joined by lakhs of people across the country, also held a candle-light vigil at Jantar Mantar and walked to Raj Ghat to pay their homage to the Father of the Nation. The one-day fast was observed in support of Mahatma Gandhi's dream of Hind Swaraj and to uphold the food sovereignty of the country from the onslaught of technologies like GM seeds, Mr Arun Raj of GM Free India Campaign said.

Explaining the harmful effects of Bt Brinjal, Mr Raj informed that in these crops, genes from unrelated organisms like bacteria and viruses are being inserted into our food plants.
''The insertion of these foreign genes into brinjal causes a lot of disruptions at the genomic level that will lead to several health and environmental impacts,'' he added.
These foods have been documented to cause a lot of adverse health impacts like allergies, damaging liver, kidneys, pancreas and also lead to infertility problems.
He said they have three demands from the government. First, it should ensure health safety through legitimate and adequate studies on the Bt Brinjal. Second, all the environmental hazards should be ascertained through studies and dealt with beforehand. Third, the Committee that cleared Bt Brinjal did not have impartial members as some of them were associated with the industry.
''Even the Chairman of the Committee, Arjula Reddy, had confessed that it was approved under Agriculture Ministry's pressure,'' Mr Raj stated.

The fast was observed in more than 64 cities throughout the country and was supported by people's movements, farmers' unions and NGOs.


                                         -- (UNI) -Read more >> http://aidindia.org/main/content/blogcategory/0/442/

                                                                           http://news.webindia123.com/news/Articles/India/20100130/1435793.html











Friday, January 29, 2010

Quote Of the Day


“Edison failed 10, 000 times before he made the electric light. Do not be discouraged if you fail a few times.”  
      -   Napoleon Hill (American author, 1883-1970)




        


National Ignition Facility (in USA )results promising for fusion


By Jason Palmer 
Science and technology reporter, BBC News

NIF target chamber (LLNL)
The experiment focuses 192 high-power laser beams to a tiny target

A major hurdle to producing fusion energy using lasers has been swept aside by results in a new report.
The controlled fusion of atoms - creating conditions like those in our Sun - has been touted as a potentially revolutionary energy source.
However, there have been doubts about the planned use of powerful lasers for fusion energy because the "plasma" they create could interrupt the fusion.
The Science article showed that plasma is far less a problem than expected.
The report is based on the first experiments from the National Ignition Facility in the US that used all 192 of its laser beams.
Along the way, the experiments smashed the record for the highest energy from a laser - by a factor of 20.
Star power
Construction of the National Ignition Facility began at Lawrence Livermore National Laboratory in 1997, and was formally completed in May last year.
The goal, as its name implies, is to harness the power of the largest laser ever built to start "ignition" - effectively a carefully controlled thermonuclear explosion.

INERTIAL CONFINEMENT FUSION
Artist's impression of NIF target (LLNL)
192 laser beams are focused through holes in a target container called a hohlraum
Inside the hohlraum is a tiny pellet containing an extremely cold, solid mixture of hydrogen isotopes
Lasers strike the hohlraum's walls, which in turn radiate X-rays
X-rays strip material from the outer shell of the fuel pellet, heating it up to millions of degrees
If the compression of the fuel is high enough and uniform enough, nuclear fusion can result

It is markedly different from current nuclear power, which operates through splitting atoms - fission - rather than squashing them together as in fusion.
Proving that such a lab-based fusion reaction can release more energy than is required to start it - rising above the so-called breakeven point - could herald a new era in large-scale energy production.
In the approach Nif takes, called inertial confinement fusion, the target is a centimetre-scale cylinder of gold called a hohlraum.
It contains a tiny pellet of fuel made from an isotope of hydrogen called deuterium.
A significant potential hurdle to the process that many have suggested over 30 years of the laser fusion debate regards the "plasma" that the lasers will create in the hohlraum.
The fear has been that the plasma, a roiling soup of charged particles, would interrupt the target's ability to absorb the lasers' energy and funnel it uniformly into the fuel, compressing it and causing ignition.
Siegfried Glenzer, the Nif plasma scientist, led a team to test that theory, smashing records along the way.
"We hit it with 669 kiloJoules - 20 times more than any previous laser facility," Nif's Siegfried Glenzer told BBC News.
That isn't that much total energy; it's about enough to boil a one-litre kettle twice over.
However, the beams delivered their energy in pulses lasting a little more than 10 billionths of a second.
By way of comparison, if that power could be maintained, it would boil the contents of more than 50 Olympic-sized swimming pools in a second.
'Dramatic step'
Crucially, the recent experiments provided proof that the plasma did not reduce the hohlraum's ability to absorb the incident laser light; it aborbed about 95%.
But more than that, Dr Glenzer's team discovered that the plasma can actually be carefully manipulated to increase the uniformity of the compression.
NIF target chamber (LLNL)
The 130-tonne target chamber is kept under vacuum for the experiments
"For the first time ever in the 50-year journey of laser fusion, these laser-plasma interactions have been shown to be less of a problem than predicted, not more," said Mike Dunne, director of the UK's Central Laser Facility and leader of the European laser fusion effort known as HiPER.
"I can't overstate how dramatic a step that is," he told BBC News. "Many people a year ago were saying the project would be dead by now."
Adding momentum to the ignition quest, Lawrence Livermore National Laboratory announced on Wednesday that, since the Science results were first obtained, the pulse energy record had been smashed again.
They now report an energy of one megaJoule on target - 50% higher than the amount reported in Science.
The current calculations show that about 1.2 megaJoules of energy will be enough for ignition, and currently Nif can run as high as 1.8 megaJoules.
Dr Glenzer said that experiments using slightly larger hohlraums with fusion-ready fuel pellets - including a mix of the hydrogen isotopes deuterium as well as tritium - should begin before May, slowly ramping up to the 1.2 megaJoule mark.
"The bottom line is that we can extrapolate those data to the experiments we are planning this year the results show that we will be able to drive the capsule towards ignition," said Dr Glenzer.
Before those experiments can even begin, however, the target chamber must be prepared with shields that can block the copious neutrons that a fusion reaction would produce.
But Dr Glenzer is confident that with everything in place, ignition is on the horizon.
He added, quite simply, "It's going to happen this year."