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The scientists at IBM Research – Almaden who made the film are moving atoms to explore the limits of data storage because, as data creation and consumption gets bigger, data storage needs to get smaller, all the way down to the atomic level. Traditional silicon transistor technology has become cheaper, denser and more efficient, but ...
Franck and Hertz explained their experiment in terms of elastic and inelastic collisions between the electrons and the mercury atoms. [1] [2] Slowly moving electrons collide elastically with the mercury atoms. This means that the direction in which the electron is moving is altered by the collision, but its speed is unchanged.
When atoms encounter such red-detuned laser light, they experience a "light shift", which creates a spatially dependent potential energy landscape. In the context of optical molasses, the term "molasses" refers to the slowing down of atoms, analogous to how molasses slows down the movement of objects moving through it.
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The duo took thousands of photos to create the glowing image of Earth's lunar companion – and it does not disappoint. "The most ridiculously detailed" photo of the moon has arrived Skip to main ...
"IBM" spelled out using 35 xenon atoms. IBM in atoms was a demonstration by IBM scientists in 1989 of a technology capable of manipulating individual atoms. [1] A scanning tunneling microscope was used to arrange 35 individual xenon atoms on a substrate of chilled crystal of nickel to spell out the three letter company initialism. It was the ...
Atoms can attach to one or more other atoms by chemical bonds to form chemical compounds such as molecules or crystals. The ability of atoms to attach and detach from each other is responsible for most of the physical changes observed in nature. Chemistry is the science that studies these changes.
Scientists have gotten the longest and most detailed glimpse yet of the supermassive black hole at the center of the Milky Way galaxy. They say it’s emitting some ‘weird, wild, and wonderful ...