Science & Technology
But a new bright spot is emerging. Small, innovative return-to-work programs are springing up in other sectors -- specifically in science, engineering and technology. Prospects for long-term job growth in these fields are relatively good, and many employers expect a talent shortage, partly because of high quit rates among experienced women.
The leak was in the same system that has already caused a vexing one-month delay. Shuttle managers were shooting for another launch attempt on Thursday night provided they could fix the problem quickly.
The gaseous hydrogen began leaking just as the launch team was close to wrapping up the loading of Discovery's external fuel tank for a late-night liftoff. The seven astronauts had yet to board the spaceship.
Using a new dating technique, Chinese and US researchers led by Guanjun Shen of Nanjing Normal University determined that the tool-making "erect man" lived in and around the caves of Zhoukoudian - among the most highly-prized sites in the study of early humans - as far back as 780,000 years ago.
The findings, published in the London-based science journal Nature, are sure to stir controversy among scientists, who have long debated the timing and routes of hominin migrations.
Mr Robertson had arranged the meeting to establish whether there were any legislative or regulatory impediments to space flights into near earth orbit. The leading developer of the ground-breaking technology Virgin Galactic has expressed an interest in operating from RAF Lossiemouth.
Flights would be able to carry both space tourists and launch satellites into orbit.

This Hubble closeup of part of the Trifid Nebula in Sagittarius shows the kind of environment where the Sun and solar system were probably born. Massive hot stars dominate the scene; they will run through their brief lives quickly and explode as supernovae. The larger white box shows several more modest stars that recently formed in the retreating gas-and-dust pillar to their right. The small box highlights a "proplyd," a protoplanetary disk around a star that may end up like our Sun.
For one thing, the material of the infant solar system (as preserved in the earliest meteorites) was enriched by fresh supernova debris from at least one very young, massive star (with 15 to 25 solar masses) that exploded less than 5 light-years away, no more than 2 million years after the Sun's formation. Today no such massive star exists within 300 light-years of the Sun. Clearly, the early solar system had stars close around it.
But that was 4.57 billion years ago. Where are the Sun's cluster-mates now?
Some of them, it turns out, should remain surprisingly nearby. An analysis by Simon F. Portegies Zwart (University of Amsterdam) finds that the Sun's birth cluster started off with about 500 to 3,000 solar masses and a diameter smaller than about 20 light-years - typical for open clusters. Evidence for the cluster's mass and size, Zwart writes, is preserved in the anomalous chemical abundances and structure of the Kuiper Belt - the small, icy objects in the outer solar system beyond Neptune. Some of the Kuiper Belt's objects are still dynamically "hot"; they were stirred up and scattered by the gravity of at least one nearby cluster star making a close pass in early days.

Brain areas activated by considering how involved God (or another perceived supernatural entity) is. These are areas that also help us understand the intentions of others and the emotional significance of these intentions.
A belief in God is deeply embedded in the human brain, which is programmed for religious experiences, according to a study that analyses why religion is a universal human feature that has encompassed all cultures throughout history.
Scientists searching for the neural "God spot", which is supposed to control religious belief, believe that there is not just one but several areas of the brain that form the biological foundations of religious belief.
The researchers said their findings support the idea that the brain has evolved to be sensitive to any form of belief that improves the chances of survival, which could explain why a belief in God and the supernatural became so widespread in human evolutionary history.
Previously top quarks have been observed only when produced in pairs, as when they were initially discovered 14 years ago at the Fermi National Accelerator Laboratory in Batavia, Ill. Now, researchers using Fermilab's two detectors announced March 9 that they have detected single top quarks. The techniques used to find the singleton quarks could help to identify other rare particles, such as the Higgs boson, the scientists say.
Every day, all over the world, people assemble peacefully into crowds in places such as shopping malls, sporting events, concerts and tourist sites - but crowds can shift from peaceful to unruly, even riotous, in just a few minutes given the right conditions.
The factors that cause a "charged" crowd to reach a "tipping point" and erupt into violence are not well understood by scientists because crowd behavior is so difficult to study. No one wants to incite a riot for the sake of science and surveys of individuals about their behavior as part of a crowd have not been that reliable.
"Crowds are complex, adaptive systems that may seem chaotic but have an underlying order," said Paul Torrens, associate professor in the School of Geographical Sciences at Arizona State University, and director of its Geosimulation Laboratory. "They self-assemble in time and space and exhibit geometric patterns based on layer upon layer of human-to-human and human-to-environment interactions. They are almost impossible to model realistically."
But that is exactly what he and his colleagues are intent on doing.

Three-dimensional perspective view of vertical displacement of the land surface south of Bam, Iran during the three and a half years after the December 26, 2003 earthquake derived from analysis of radar images. The model below shows the zone of rock damage that contracted or healed after the earthquake, with the green colors showing the strongest contraction.
For the first time, scientists have watched as the Earth's surface "heals" itself following the disruptive jolt of an earthquake, in this case, the 2003 temblor that devastated Bam, Iran.
The fault under the city erupted in a 6.6-magnitude quake on Dec. 26 that year, leveling the town and killing more than 26,000 people. But though devastation was evident, there was no clear fault mark at the surface.
"The fault slipped maybe 2 or 3 meters [6.5 to 10 feet] at depth, but at the surface, when colleagues of mine went out, they found some cracks, but the motion on those cracks is only about up to 25 centimeters [10 inches] or less," said one of the scientists who studied the quake, Eric Fielding of Caltech. "We have some layer of material near the surface that's behaving differently from the fault at depth."
Seismologists had noticed similar mismatches between depth and surface fault movements during other earthquakes. Because eventually both layers of the fault have to match up, the question was, "what's happening in this surface layer?" Fielding said.
Measuring only ten centimetres across and emitting a faint blue glow as it runs, the Field Emission Electric Propulsion (FEEP) engine produces an average thrust equivalent to the force of a single falling hair. But despite its low power, FEEP's thrust range and controllability are far superior to more forceful thrusters, holding the key to future success of an ambitious ESA science mission.







