Ga-ma78g-ds3h.GA-MA78G-DS3H (rev. 1.0)

 

Ga-ma78g-ds3h

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

Are you a human?.GA-MA78G-DS3H (Rev. ) | Motherboard – GIGABYTE

 

Gigabyte GA-MA78G-DS3H – motherboard – ATX – Socket AM2+ – AMD G overview and full product specs on CNET. Box Contents GA-MA78G-DS3H motherboard Motherboard driver disk User’s Manual Quick Installation Guide One IDE cable and one floppy disk drive cable Two SATA 3Gb/s cables I/O Shield • The box contents above are for reference only and the actual items shall depend on product package you obtain. Page 7: Ga-Ma78G-Ds3H Motherboard Layout. Supports new generation of AMD Phenom™II X6 processors Supports AMD Phenom / Athlon series processors Dual Channel DDR2 for remarkable system performance Integrated ATI Radeon HDbased graphics (DX10) Ultimate graphics performance with dual PCI-E x16 interface with ATI Hybrid CrossFireX support Integrated SATA 3Gb/s with RAID function High Quality dB SNR .

 

Ga-ma78g-ds3h.GIGABYTE GA-MA78G-DS3HP USER MANUAL Pdf Download | ManualsLib

Box Contents GA-MA78G-DS3H or GA-MA78G-DS3HP motherboard Motherboard driver disk User’s Manual Quick Installation Guide One IDE cable and one floppy disk drive cable Two SATA 3Gb/s cables I/O Shield • The box contents above are for reference only and the actual items shall depend on product package you obtain. Downloads 78 Drivers, Utilities, Manual and BIOS for Gigabyte GA-MA78G-DS3H (rev. ) Motherboards. Here’s where you can download the newest software for your GA-MA78G . Gigabyte GA-MA78G-DS3H – motherboard – ATX – Socket AM2+ – AMD G overview and full product specs on CNET.
 
 
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Magnetic nanotubes: a material for the memory of the future

Scientists from the Leibniz-Institut fur Festkrper und Werkstoffforschung Dresden (IFW) reported that they managed to create nanoscopic memory elements based on nanotubes filled with magnetic material.

In their experiments, scientists used carbon nanotubes with a diameter of about ten nanometers, inside which were placed atoms of iron, cobalt or nickel, exhibiting ferromagnetic properties. Scientists also claim they were able to grow nanotubes on a silicon substrate using chemical vapor substitution.

At this stage of research, only the possibility of creating such nanostructures is reported – their magnetic properties have not yet been fully studied and there is no confidence that the ferromagnetic properties of “magnetic nanotubes” are similar to those of ordered magnetic domains. However, if ferromagnets inside nanotubes also exhibit well, and most importantly, retain their properties over time, it will be possible to hope for the creation of a ferromagnetic memory, the recording density of which is 1000 times (by three orders of magnitude!) exceeds the density of modern RAM. However, a different kind of problem arises: how to create a read-write head that can efficiently operate on a scale of tens of nanometers.

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