Modelling functional materials : memristor
Memristor which is known as memory resistor, is unknow to the circuit element. It is very much as important as the other three circuit element. When there is electrical phenomena involve, memristor tends to show many special characteristics. It is usually very small and this is useful in the modelli...
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sg-ntu-dr.10356-737652023-03-04T15:39:13Z Modelling functional materials : memristor Hong, Rui Sheng Su Haibin School of Materials Science and Engineering DRNTU::Engineering::Materials Memristor which is known as memory resistor, is unknow to the circuit element. It is very much as important as the other three circuit element. When there is electrical phenomena involve, memristor tends to show many special characteristics. It is usually very small and this is useful in the modelling of biological device. This will make better understanding of the concept for electrical phenomena. Biological phenomena are being defined as memristive. The behaviour cannot be captured in a rapid learning cycle framework. In this report, we will be introducing the memristor. There are tests to prove memristor characteristics. The goal is to explain the properties of memristive switching through experiments and highlight the importance and relevance of memristor. Bachelor of Engineering (Materials Engineering) 2018-04-09T01:24:35Z 2018-04-09T01:24:35Z 2018 Final Year Project (FYP) http://hdl.handle.net/10356/73765 en Nanyang Technological University 26 p. application/pdf |
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DRNTU::Engineering::Materials Hong, Rui Sheng Modelling functional materials : memristor |
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Memristor which is known as memory resistor, is unknow to the circuit element. It is very much as important as the other three circuit element. When there is electrical phenomena involve, memristor tends to show many special characteristics. It is usually very small and this is useful in the modelling of biological device. This will make better understanding of the concept for electrical phenomena. Biological phenomena are being defined as memristive. The behaviour cannot be captured in a rapid learning cycle framework. In this report, we will be introducing the memristor. There are tests to prove memristor characteristics. The goal is to explain the properties of memristive switching through experiments and highlight the importance and relevance of memristor. |
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Su Haibin |
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Su Haibin Hong, Rui Sheng |
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Final Year Project |
author |
Hong, Rui Sheng |
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Hong, Rui Sheng |
title |
Modelling functional materials : memristor |
title_short |
Modelling functional materials : memristor |
title_full |
Modelling functional materials : memristor |
title_fullStr |
Modelling functional materials : memristor |
title_full_unstemmed |
Modelling functional materials : memristor |
title_sort |
modelling functional materials : memristor |
publishDate |
2018 |
url |
http://hdl.handle.net/10356/73765 |
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1759858237706862592 |