News
MIT physicists have captured the first images of individual atoms freely interacting in space. The pictures reveal ...
The rapid and non-destructive nature of infrared imaging and Attenuate Total Reflectance (ATR) FTIR microscopy provides a ...
2don MSN
Researchers from the University of Tokyo have found a way to observe clotting activity in blood as it happens—without needing ...
Our brain is a complex organ. Billions of nerve cells are wired in an intricate network, constantly processing signals, enabling us to recall memories or to move our bodies.
Japanese scientists have found a way to observe clotting activity in blood as it happens, without needing invasive procedures ...
Researchers have found a way to observe clotting activity in blood as it happens -- without needing invasive procedures. Using a new type of microscope and artificial intelligence (AI), their study ...
12d
Interesting Engineering on MSNMIT captures first image of free-range atoms, can help visualize quantum phenomenaResearchers captured the first-ever images of atoms freely interacting in space, offering a rare glimpse into quantum ...
MIT physicists have taken the first-ever direct images of individual atoms interacting freely in space. Their findings, ...
12d
ZME Science on MSNScientists Have Taken the First Ever Photos of Atoms Interacting in Free SpaceUnder ultracold conditions, bosons form a curious state of matter known as a Bose-Einstein condensate (BEC), in which all the ...
2d
News-Medical.Net on MSNInnovative technology offers non-invasive way to observe blood clottingResearchers from the University of Tokyo have found a way to observe clotting activity in blood as it happens - without needing invasive procedures.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results