| Abstract: | Elliptic partial differential equations can be solved using the Galerkin-finite element method to generate the approximating algebraic equations, and an electrical network to solve the resulting matrices. Some element configurations require the use of networks containing negative resistances which, while physically realizable, are more expensive and time-consuming to construct. ?? 1982. |
| Genre: | Article |
| ProdID: | 70011826 |
| Citation Author: | Franke, O. L.; Pinder, G. F.; Patten, E. P. |
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| Citation End Page: | 71 |
| Citation Issue: | 1 |
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| Citation Language: | English |
| Citation Larger Work Title: | Mathematics and Computers in Simulation |
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| Citation Number Of Pages: | 7 |
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| Citation Search Results Text: | An electric-analog simulation of elliptic partial differential equations using finite element theory; 1982; Article; Journal; Mathematics and Computers in Simulation; Franke, O. L.; Pinder, G. F.; Patten, E. P. |
| Citation Start Page: | 65 |
| Citation Volume: | 24 |
| Citation Year: | 1982 |
| Type: | citation/reference |
| Text: | An electric-analog simulation of elliptic partial differential equations using finite element theory; 1982; Article; Journal; Mathematics and Computers in Simulation; Franke, O. L.; Pinder, G. F.; Patten, E. P. |
| URL (THUMBNAIL): | http://pubs.er.usgs.gov/thumbnails/outside_thumb.jpg |
| Date Other: | Fri, 1 Jan 1982 00:00 -0600 |
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