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Energy 的代码
sphere.for
subroutine frepath(i,j)
common/angl/ux,uy,uz,vx,vy,vz
common/cood/x,y,z,xd,yd,zd
common/cute/estop1,estop2,estop,estopm
common/divi/div,idiv,ediv(200),rediv(199)
sphere.for
subroutine frepath(i,j)
common/angl/ux,uy,uz,vx,vy,vz
common/cood/x,y,z,xd,yd,zd
common/cute/estop1,estop2,estop,estopm
common/divi/div,idiv,ediv(200),rediv(199)
sphere.for
subroutine frepath(i,j)
common/angl/ux,uy,uz,vx,vy,vz
common/cood/x,y,z,xd,yd,zd
common/cute/estop1,estop2,estop,estopm
common/divi/div,idiv,ediv(200),rediv(199)
econst.xmo
XMD (Version 2.5.29 Nov 27 2000)
Not using pthread library.
Not using asm("finit"); patch in thread routines.
#######################################################################
#
efinderimbedded.m
function Efinder
tic
%Efinder: In this example, Efinder is imbedded in for loops to find the
%eigen energies for double-well potential. Note: hbar has been scaled to 1.
%To use: =>run
efinderproof.m
function Efinder
tic
%Efinder: Finds the numerical values for eigen energies that satisfy the
%Schroedinger equation for a single-well potential and then tests the result
%with the actual value
gc_readme.txt
#########################################################################
# #
# GC_optimization - software for energy minimiz
init.m
% MATLAB SIMULATION OF FS-1015 LPC-10e
% COPYRIGHT (C) 1996-99 ANDREAS SPANIAS and TED PAINTER
%
% This Copyright applies only to this particular MATLAB implementation
% of the LPC-10e coder. The
mcc.cpp
/*
=====================================================================
mcc.cpp
Methods for the MCC (Monte Carlo collision) class.
0.9 (JohnV 02-06-95) Initial draft.
1.01 (JohnV 01-02-97) Restruc
gsnake.tex
\rhead{Object class GSNAKE}
\section{GSNAKE : Generalized Active Contour Model}
{\tt GSNAKE} is a class for modeling and extracting arbitrary deformable contours. It consists of {\tt PYRAMID} for