Soon wrap your smartphone around your wrist

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1) soon you will be able to wear your smartphone around your waist or fold your computer to fit and your pocket!

2) researchers have taken one step forward towards more bendable devices by manufacturing a thin films that keeps its useful electric and magnetic properties even when highly curved.

3) flexible electrical objects are very difficult  to manufacture because many of the materials with high useful electronic properties which tend to be very hard. Recently Researchers have found this problem by taking very tiny bits of substances  like silicon and embedding them in the flexible plastics.

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4) a team of physicists and engineers from South Korea took the same approach with Bismuth ferrite which is one of the most promising materials whose electronics have the properties which can be controlled by a magnetic field, and vice versa. This type of materials are said to be multiferroics which attracts the interest for applications like energy accuracy , instantaneous actions on computer.

5)  recently the researchers have Made nanoparticles of Bismuth ferrite and have mixed it with polymer solution. The solution was dried in a series of steps at increasing temperature to produce a thin flexible same when the researchers tested the electric current and magnetic properties of the film, they found that their new material did much more than preserve the uses and properties of bulk Bismuth ferrite it actually made them better. And the improve properties remained even as the film was curve into a cylindrical shape.

6)” bulk of Bismuth ferrite has crucial errors for some apps , such as a High leakage of current which weakers the strong electric properties” told by a  young professor Pak Lee. He is a Professor at hanyang university in Seoul, South Korea. Mixing of nano atoms of Bismuth ferrite into a solution of polymer improved the current leakage problems in different apps, he said, and also gave the film flexible, stretchable properties.

7) flexible bismuth multiferrorics devices could enable a new fashionable and wearable devices such as function of health monitoring equipment used for virtual reality attire,  pak lee said. The multiferroic material could be used in in high iron density energy-efficient memory and switches in such devices, he said.

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