This title demonstrates how to develop computer programmes which solve specific engineering problems using the finite element method. It enables students, scientists and engineers to assemble their own computer programmes to produce numerical results to solve these problems. The first three editions of Programming the Finite Element Method established themselves as an authority in this area. This fully revised 4th edition includes completely rewritten programmes with a unique description and list of Parallel versions of programmes in Fortran 90. The Fortran programmes and subroutines described in the text will be made available on the Internet via anonymous ftp, further adding to the value of this title.
A Java port of LDC s Champollion sentence aligner (http://champollion.sourceforge.net). Intended audience is Natural Language researchers wishing to sentence-align Parallel text. In the future, Akerblad will extend Champollion with such features as rule
The program md.f implements a simple molecular dynamics simulation in continuous real space. The velocity Verlet algorithm is used to implement the time stepping. The force and energy computations are performed in Parallel, as is the time integration. (The program uses some Fortran90 features, so an F90 compiler may be needed.)
北京大學ACM題
Here is a geometric problem. You have an angle and some squares in the first quadrant of the plane rectangular coordinates. The vertex of the angle is fixed on the origin O of the coordinates, and both of its radial lines are specified by the input. The sizes of the squares are also specified by the input, and the squares can shift vertically and horizontally. Now your job is to use the squares and the radial lines of the angle to enclose the maximum area, which excludes the area of the squares (see Figure 1). You should note that the edges of the squares must be Parallel to the axes.
vhdl編寫,8b—10b 編解碼器設計
Encoder:
8b/10b Encoder (file: 8b10b_enc.vhd)
Synchronous clocked inputs (latched on each clock rising edge)
8-bit Parallel unencoded data input
KI input selects data or control encoding
Asynchronous active high reset initializes all logic
Encoded data output
10-bit Parallel encoded output valid 1 clock later
Decoder:
8b/10b Decoder (file: 8b10b_dec.vhd)
Synchronous clocked inputs (latched on each clock rising edge)
10-bit Parallel encoded data input
Asynchronous active high reset initializes all logic
Decoded data, disparity and KO outputs
8-bit Parallel unencoded output valid 1 clock later
An optimal neuron evolution algorithm for the restoration
of linearly distorted images is presented in this paper. The proposed
algorithm is motivated by the symmetric positive-definite quadratic programming
structure inherent in restoration. Theoretical analysis and experimental
results show that the algorithm not only significantly increases
the convergence rate of processing, hut also produces good restoration
results. In addition, the algorithm provides a genuine Parallel processing
structure which ensures computationally feasible spatial domain image
restoration
Capacity of a MIMO channel with nt transmit antenna and nr recieve antenna is analyzed. The power in Parallel channel (after decomposition) is distributed as water-filling algorithm
三星公司官方 GIVEIO.SYS源代碼下載。
In windows NT/2000/XP, any application can’t access the I/O such as the Parallel port. So, GIVEIO.SYS enables
SJF.exe to access the Parallel port without any memory fault. In windows 95/98, GIVEIO.SYS isn’t needed.