Science
Laser-targeting A.I. Yields More Mars Science
This is how AEGIS sees the Martian surface. All targets found by the A.I. program are outlined: blue targets are rejected, while red are retained. The top-ranked target is shaded green; if there's a second-ranked target, it's shaded orange. These NavCam images have been contrast-balanced.
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Rice U. chemists create 3-D printed graphene foam
3-D graphene foam objects are produced by shining a laser on a mixture of powdered sugar and nickel powder. The laser is moved back and forth to melt sugar in a 2-D pattern, and nickel acts as a catalyst to spur the growth of graphene foam. The process is repeated with successive layers of powder to build up 3-D objects.
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Researchers developed nanoparticle based contrast agent for dual modal imaging of cancer
This is a schematic diagram of the europium doped gadolinium oxide nanorods and the silica coating to improve the biocompatibility. Invitro cytotoxicity analysis, invitro magnetic resonance imaging and optical imaging of the prepared samples were carried out.
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NASA Mars Orbiter Views Rover Climbing Mount Sharp
The feature that appears bright blue at the center of this scene is NASA's Curiosity Mars rover amid tan rocks and dark sand on Mount Sharp, as viewed by the HiRISE camera on NASA's Mars Reconnaissance Orbiter on June 5, 2017.
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Enhanced photocatalytic activity by Cu2O nanoparticles integrated H2Ti3O7 nanotubes
The suggested mechanism of photocatalytic oxidization of EM over Cu2O@H2Ti3O7 nanocomposite under sunlight irradiation. Under the sunlight irradiation, photo-generated electrons (e?) of nanocomposite aggregated on nanotubes, and holes (h?) aggregated on Cu2O nanoparticles, which will reduce the bandgap energy and prolong the effective separation of photo-induced electron-hole pairs, enhance eventually the photocatalytic activity. It causes a large number of the hydroxy radical groups (·OH) generated on nanocomposite, which will effectively oxidize EM due to the synergistic effect between them to form heterojunction structure. Therefore, nanocomposite exhibits the excellent photocatalytic performance.
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Tiny bubbles provide tremendous propulsion in new microparticles research-Ben-Gurion U.
Caption: Ben-Gurion University of the Negev researchers demonstrate a light-generated bubble for microparticle propulsion. Panel (a) shows the 42?μm diameter spherical particle and the 405?nm laser beam as the respective dark and bright patches. Panel (b) shows that 40 milliseconds later the microsphere has traversed a distance roughly 10 times its size.
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New prospects for universal memory -- high speed of RAM and the capacity of flash: Thin films created at MIPT could be the basis for future development of ReRAM
Because data storage and processing solutions are so central to modern technology, many research teams and companies are pursuing new types of computer memory. One of their major goals is to develop universal memory -- a storage medium that would combine the high speed of RAM with nonvolatility of a flash drive.
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Icy Moons, Galaxy Clusters, and Distant Worlds Among Selected Targets for James Webb Space Telescope
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Human Rights
Fostering a More Humane World: The 28th Eurasian Economic Summi
Conscience, Hope, and Action: Keys to Global Peace and Sustainability
Ringing FOWPAL’s Peace Bell for the World:Nobel Peace Prize Laureates’ Visions and Actions
Protecting the World’s Cultural Diversity for a Sustainable Future
Puppet Show I International Friendship Day 2020