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Energy 的代码
margtfr.m
function [margt,margf,E]=margtfr(tfr,t,f)
%MARGTFR Marginals and energy of a time-frequency representation.
% [MARGT,MARGF,E]=MARGTFR(TFR,T,F) calculates the time and
% frequency marginals and the en
cmu-trace.cc
/* -*- Mode:C++; c-basic-offset:8; tab-width:8; indent-tabs-mode:t -*- */
/*
* Copyright (c) 1997 Regents of the University of California.
* All rights reserved.
*
* Redistribution and use in sour
margtfr.m
function [margt,margf,E]=margtfr(tfr,t,f)
%MARGTFR Marginals and energy of a time-frequency representation.
% [MARGT,MARGF,E]=MARGTFR(TFR,T,F) calculates the time and
% frequency marginals and the en
sat2.c
/* sat2.c
Simple experiments with simulated annealing
find the nonlinear least squares optimum solution
usage: sat2 < input.data
*/
static char rcsid[] = "@(#)sat2.c 1.1 09:47:21 10/30/
margtfr.m
function [margt,margf,E]=margtfr(tfr,t,f)
%MARGTFR Marginals and energy of a time-frequency representation.
% [MARGT,MARGF,E]=MARGTFR(TFR,T,F) calculates the time and
% frequency marginals and the en
tstscanf.input
25 54.32E-1 thompson
56789 0123 56a72
2 quarts of oil
-12.8degrees Celsius
lots of luck
10.0LBS of fertilizer
100ergs of energy
procar
PROCAR new format
# of k-points: 8 # of bands: 8 # of ions: 2
k-point 1 : 0.00000000 0.00000000 0.00000000 weight = 0.01562500
band 1 # energy -12.77063485 # occ
outcar
vasp.4.4.5 29Jan01
serial version
--------------------------------------------------------------------------------------------------------
INCAR:
POTCAR: US Mg
sde.m
function DY=sde(X,Y);
%> The file defines a Schrodinger type 1D time-independent DE
%> with a potential V defined by a string
%> which is a global variable with space variable X.
sat2.c
/* sat2.c
Simple experiments with simulated annealing
find the nonlinear least squares optimum solution
usage: sat2 < input.data
*/
static char rcsid[] = "@(#)sat2.c 1.1 09:47:21 10/30/