Scientific Information BulletinDepartment of the Navy, Office of the Chief of Naval Research, Far East, 1991 |
No grāmatas satura
1.–5. rezultāts no 100.
9. lappuse
... techniques may be applied . • An interface to a computer - aided design ( CAD ) system allows easier description of complex domains for the FEM . Staggered grids and up - wind differ- encing may be selected for the FDM . • Higher ...
... techniques may be applied . • An interface to a computer - aided design ( CAD ) system allows easier description of complex domains for the FEM . Staggered grids and up - wind differ- encing may be selected for the FDM . • Higher ...
16. lappuse
... technique used in the finite element method to reduce discretization matrices to diagonal form , resulting in more efficient processing . INTRODUCTION Circuit simulation is heavily used in electronic design . 16 SIB 16 ( 1 ) 91.
... technique used in the finite element method to reduce discretization matrices to diagonal form , resulting in more efficient processing . INTRODUCTION Circuit simulation is heavily used in electronic design . 16 SIB 16 ( 1 ) 91.
22. lappuse
... techniques . In particular , it is necessary to use implicit integration , such as backward Euler , or higher order backward differentiation ( Gear ) methods ( Ref 2 ) . This even- tually results in a system of nonlinear equations to be ...
... techniques . In particular , it is necessary to use implicit integration , such as backward Euler , or higher order backward differentiation ( Gear ) methods ( Ref 2 ) . This even- tually results in a system of nonlinear equations to be ...
24. lappuse
... techniques in the late 1960s and early 1970s . In 1970 , Gustavson et al . pub- lished a paper ( Ref 7 ) describing the use of a code - generation approach , which they termed GNSO ( GeNerate and Solve ) , to the solution of sparse ...
... techniques in the late 1960s and early 1970s . In 1970 , Gustavson et al . pub- lished a paper ( Ref 7 ) describing the use of a code - generation approach , which they termed GNSO ( GeNerate and Solve ) , to the solution of sparse ...
25. lappuse
... techniques used by Miura and others ( for example , see Refer- ence 11 ) in vectorizing Monte - Carlo codes . ( At ... technique thought impractical by many sparse matrix researchers . It does not sparse matrix researchers . It does not ...
... techniques used by Miura and others ( for example , see Refer- ence 11 ) in vectorizing Monte - Carlo codes . ( At ... technique thought impractical by many sparse matrix researchers . It does not sparse matrix researchers . It does not ...
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Populāri fragmenti
13. lappuse - Such identification does not imply recommendation or endorsement by the National Institute of Standards and Technology, nor does it imply that the materials or equipment identified are necessarily the best available for the purpose.
46. lappuse - Information Systems Engineering Faculty of Engineering, Osaka University 2-1, Yamadaoka, Suita, Osaka 565, JAPAN phone: +81-6-879-7822; fax: +81-6-879-7827; e-mail: {wang,yumoto,ohkawa,komoda}@ise.
92. lappuse - Japan and is under direct control of the Agency of Industrial Science and Technology of the Ministry of International Trade and Industry.
25. lappuse - LW Nagel. SPICE2, A Computer Program to Simulate Semiconductor Circuits.
65. lappuse - A fuzzy set is a set whose boundary is not sharp. That is, the change from nonmembership to membership in a fuzzy set is gradual rather than abrupt. This gradual change is expressed by a membership grade function...
65. lappuse - UA(X) expresses the grade of membership of element x of X in the fuzzy set A or, in other words, the degree of compatibility of x with the concept represented by the fuzzy set. A fuzzy set A is called normalized when ma\,,fXuA(x) = 1.
98. lappuse - He is currently an Assistant Professor of Electrical Engineering at the University of Minnesota, Minneapolis.
74. lappuse - During the academic years 1975-76 and 1982-83, he was a Fellow at the Netherlands Institute for Advanced Studies in Wassenaar. Holland, and in 1980 he was a fellow of the Japan Society for the Promotion of Science. Dr. Klir's main research activities have been in general systems methodology, logic design and computer architecture, switching and automata theory, information theory, and the philosophy of science.