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Wednesday, May 4, 2016

OUTER-SPACE: PLANET NINE: A PLANET THAT SHOULDN'T EXIST

This is an artist's conception of Planet Nine.
Credit: Caltech/R. Hurt (IPAC)
Earlier this year scientists presented evidence for Planet Nine, a Neptune-mass planet in an elliptical orbit 10 times farther from our Sun than Pluto. Since then theorists have puzzled over how this planet could end up in such a distant orbit.

HEALTH DAILY: ANTIBIOTICS ALLOWS GUT PATHOGENS TO 'BREATHE'

Pathogen bacteria illustration (stock image). Exactly how the resident "good" microbes in the gut protect against pathogens, and how antibiotic treatments foster growth of disease-causing microbes have been poorly understood until now.
Credit: © frenta / Fotolia

SCIENCE & TECH: NANOROBOTICS: THE WORLD TINIEST ENGINE

Expanding polymer-coated gold nanoparticles.
Credit: Yi Ju/University of Cambridge NanoPhotonics
Researchers have developed the world's tiniest engine -- just a few billionths of a metre in size -- which uses light to power itself. The nanoscale engine, developed by researchers at the University of Cambridge, could form the basis of future nano-machines that can navigate in water, sense the environment around them, or even enter living cells to fight disease.
The prototype device is made of tiny charged particles of gold, bound together with temperature-responsive polymers in the form of a gel. When the 'nano-engine' is heated to a certain temperature with a laser, it stores large amounts of elastic energy in a fraction of a second, as the polymer coatings expel all the water from the gel and collapse. This has the effect of forcing the gold nanoparticles to bind together into tight clusters. But when the device is cooled, the polymers take on water and expand, and the gold nanoparticles are strongly and quickly pushed apart, like a spring. The results are reported in the journal PNAS.
"It's like an explosion," said Dr Tao Ding from Cambridge's Cavendish Laboratory, and the paper's first author. "We have hundreds of gold balls flying apart in a millionth of a second when water molecules inflate the polymers around them."
"We know that light can heat up water to power steam engines," said study co-author Dr Ventsislav Valev, now based at the University of Bath. "But now we can use light to power a piston engine at the nanoscale."
Nano-machines have long been a dream of scientists and public alike, but since ways to actually make them move have yet to be developed, they have remained in the realm of science fiction. The new method developed by the Cambridge researchers is incredibly simple, but can be extremely fast and exert large forces.
The forces exerted by these tiny devices are several orders of magnitude larger than those for any other previously produced device, with a force per unit weight nearly a hundred times better than any motor or muscle. According to the researchers, the devices are also bio-compatible, cost-effective to manufacture, fast to respond, and energy efficient.
Professor Jeremy Baumberg from the Cavendish Laboratory, who led the research, has named the devices 'ANTs', or actuating nano-transducers. "Like real ants, they produce large forces for their weight. The challenge we now face is how to control that force for nano-machinery applications."
The research suggests how to turn Van de Waals energy -- the attraction between atoms and molecules -- into elastic energy of polymers and release it very quickly. "The whole process is like a nano-spring," said Baumberg. "The smart part here is we make use of Van de Waals attraction of heavy metal particles to set the springs (polymers) and water molecules to release them, which is very reversible and reproducible."
The team is currently working with Cambridge Enterprise, the University's commercialisation arm, and several other companies with the aim of commercialising this technology for microfluidics bio-applications.
The research is funded as part of a UK Engineering and Physical Sciences Research Council (EPSRC) investment in the Cambridge NanoPhotonics Centre, as well as the European Research Council (ERC).

SCIENCE DAILY: EARTH MAY BE HOME TO 1 TRILLION SPECIES

Rendering of bacterium. The Earth Microbiome Project -- a global multidisciplinary project to identify microscope organisms -- has so far cataloged less than 10 million species of the estimated one trillion living on Earth.
Credit: © decade3d / Fotolia

Monday, May 2, 2016

SCIENCE DAILY: BOILING WATER SHAPES MARTIAN TERRAIN

Comparison of morphologies formed by the flow of liquid water on Earth and on Mars.
Credit: Marion Massé
At present, liquid water on Mars only exists in small quantities as a boiling liquid, and only during the warmest time of day in summer. Its role has therefore been considered insignificant until now.

SCIENCE TODAY: ENDANGERED VENOMOUS MAMMAL IN THE AGE OF DINOSAURS

ZooDom veterinarian Adrell Nunez (center) draws blood from a solenodon for DNA samples. Researchers caught the venomous mammal by allowing it to walk across their bodies at night in the forests of the Dominican Republic. Pictured from left to right: Nicolas De J. Corona, Adrell Nunez, Taras K. Oleksyk, and Yimell Corona.
Credit: Photo by Taras Oleksyk and Yashira Afanador

SCIENCE TODAY: THE GENETIC HISTORY OF ICE AGE EUROPE

Three ~31,000-year-old skulls from Dolni Vestonice in the Czech Republic. For the next five thousand years, all samples analyzed in this study -- whether from Belgium, the Czech Republic, Austria, or Italy -- are closely related, reflecting a population expansion associated with the Gravettian archaeological culture.
Credit: Martin Frouz and JirĂ­ Svoboda