Essay On Magnetoelectric Nanostructures

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Multiferroic Magnetoelectric Nanostructures for Novel Device Application is a published research paper by members of the Materials Research Society. This discourse community’s purpose is to inform engineers, usually electrical engineers, about new electronic materials and their applications. In this article, three Northeastern University and one Pennsylvania State University academics describe the use of magnetoelectric nanostructures in modern technology. The technology industry is quickly adopting magnetoelectric nanostructures as the standard material for random access memory (RAM). Random Access Memory is an essential component of computing devices, in other words, it is required for any device like a computer, smartphone, tablet, or even …show more content…
The material has to be denser in order to improve capacity. Magnetoelectric nanostructures is the new material that researchers within the discourse community have been studying to improve the capacity of random access memory. Ultra-high density disk drives are hard disk drives that store information on a computer. Like random access memory, there is a necessity within the technology industry to make ultra-high density disk drives. Companies from multinationals to small businesses store all their information in these drives. As time passes, more data is created and more data needs to be stored. Hence, more storage is needed. This need for storage increase is essential for the electronic materials industry, as it drives the technology world forward and results in the discovery and making of new …show more content…
The authors explicate how the new multiferroic material enables the production of these novel applications. They do not describe the functionality of the applications, but instead focus on the properties of the new material and how it improves the performance of these applications. The innovations the new material offers are methodically explained in the paper. The explanation is tailored for engineers and experts in the electrical engineering discipline. This is done so that fellow researchers and experts within the field can prove the claim that multiferroic material allows for more data storage and capacity than the magneto-electric material that is standard in the industry today. The piece presents innovations to meet the arduous challenge of making something smaller, faster, and more powerful, by discussing the properties of the new material with graphs, data and calculations. The language utilized is academic and technical, high level calculus and differential equations needed to understand how the material works. Electrical Engineers would be very interested in the article, since the material offers incredible advantages and different ways of manipulation. The document addresses members within the technology research community as a unified audience. The research paper is targeted to experts in the field. Therefore, the

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