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How To Overcome Leadership Battles

In times of social rancor and strife, most will fight each other, but societies are saved by those...

Thousands Of Unpublished Studies Show Why Conservation Efforts Miss The Mark

Europe alone has so much unpublished, un-catalogued biological data that it is challenging to take...

Why Antarctic Sea Ice Stopped Growing In 2015

Though numerical models and popular films like An Inconvenient Truth projected Arctic ice...

Wealth Correlated To Loneliness

You may have read that Asian cultures respect the elderly more than Europe but Asian senior citizens...

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The French Intergovernmental Panel on Climate Change (IPPC, or GIEC in French) has just announced the conclusions of its 4th report, which restates that global warming has increased the average temperature by 0.74°C over the last century. However, there is very little information about some parts of the planet, such as central Asia.

Researchers from MIT, Georgia Institute of Technology and Ohio State University have developed a new computer modeling approach to study how materials behave under stress at the atomic level, offering insights that could help engineers design materials with an ideal balance between strength and resistance to failure.

When designing materials, there is often a tradeoff between strength and ductility (resistance to breaking)-properties that are critically important to the performance of materials.


This three-dimensional atomic simulation shows the absorption of a line defect (caused by an impinging screw) by an existing twin boundary (green spheres) in nano-twinned copper.

Wood is formed from secondary xylem tissue consisting of cells with a heavily thickened secondary cell wall that is enriched in lignin and cellulose. In contrast, primary cell walls are composed mainly of polysaccharides (including cellulose), but contain very little lignin. Wood formation occurs through a complex series of steps involving cell division and expansion and the biosynthesis of lignin and cellulose. In addition, heartwood (darker wood at the center of the trunk) forms in many tree species through a highly regulated process of programmed cell death. Although herbaceous plants by definition do not form wood as in trees and shrubs, they nonetheless form secondary xylem tissue that is in many respects similar to that of their woody relatives.

Data collected in 2005 from Hurricane Rita is providing the first documented evidence that rapid intensity changes can be caused by clouds outside the wall of a hurricane's eye coming together to form a new eyewall.

Hurricanes can gain or lose intensity with startling quickness, a phenomenon never more obvious than during the historic 2005 hurricane season that spawned the remarkably destructive Katrina and Rita.

Researchers flew through Rita, Katrina and other 2005 storms trying to unlock the key to intensity changes.

The criminal justice system, often the subject of political controversy, gains major insights from the unbiased analytical tools that operations researchers introduced beginning with the President's Crime Commission in the 1960s, according to a career retrospective by the winner of the Stockholm Prize in Criminology.

The paper, "An O.R.

A team of researchers from Rensselaer Polytechnic Institute has created the world’s first material that reflects virtually no light. Reporting in the March issue of Nature Photonics, they describe an optical coating made from the material that enables vastly improved control over the basic properties of light. The research could open the door to much brighter LEDs, more efficient solar cells, and a new class of "smart" light sources that adjust to specific environments, among many other potential applications.