Asus p6x58-e pro.About this item

 

Asus p6x58-e pro

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

Ratings and Reviews.P6XE PRO – Support

 

Premium gaming performance. ASUS Gaming Routers. Powerful gaming for all. ASUS WiFi Routers. Fast and stable WiFi. Accessories. Keyboards. Mice and Mouse Pads. Headsets and Audio. Find helpful customer reviews and review ratings for ASUS P6XE Pro – LGA – X58 – SATA 6Gbps, USB , Bluetooth – ATX Intel X58 DDR3 Motherboards at Read honest and unbiased product reviews from our users/5. Oct 19,  · ASUS designed the P6XE Pro’s layout masterfully, with no tight areas evident in the board’s layout. The P6XE Pro is an ATX Form Factor board which measures 12”x” which means you will be able to mount it in most any Mid-Size or larger chassis.

 

Asus p6x58-e pro.P6XE PRO | Motherboards | ASUS Global

Oct 19,  · ASUS designed the P6XE Pro’s layout masterfully, with no tight areas evident in the board’s layout. The P6XE Pro is an ATX Form Factor board which measures 12”x” which means you will be able to mount it in most any Mid-Size or larger chassis. Premium gaming performance. ASUS Gaming Routers. Powerful gaming for all. ASUS WiFi Routers. Fast and stable WiFi. Accessories. Keyboards. Mice and Mouse Pads. Headsets and Audio. Find helpful customer reviews and review ratings for ASUS P6XE Pro – LGA – X58 – SATA 6Gbps, USB , Bluetooth – ATX Intel X58 DDR3 Motherboards at Read honest and unbiased product reviews from our users/5.
 
 
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New IBM magneto-optical material contains self-organizing three-dimensional structures

It cannot be said that we are already accustomed to all sorts of three-dimensional micro and even nanoelectronic structures, but, in any case, mentions of them are not at all rare lately. But at IBM they say that they have created a three-dimensional magneto-optical structure, which, in the future, can be integrated into future integrated microcircuits due to the fact that magneto-optical domains are “fused” into a semiconductor crystal.

IBM calls its material “metamaterial”, partly because such structures simply do not exist in nature, and partly because new microstructures make it possible to “program” the magnetic and optical properties of the material.

In addition to the fact that the new material exhibits interesting magneto-optical properties, it can be successfully called a crystal with a self-organizing ordered microstructure. The figures show the crystallization process from a solution containing a ferromagnet iron oxide (Fe2O3) and a semiconductor lead selenide. The last figure shows a snapshot of the created microstructure, obtained using an electron microscope.

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