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EXPFIT4 - A FORTRAN program for the numerical solution of systems of nonlinear second-order initial-value problems.

LG IXARU, H DEMEYER, Guido Vanden Berghe UGent and Marnix Van Daele UGent (1997) COMPUTER PHYSICS COMMUNICATIONS. 100(1-2). p.71-80
Please use this url to cite or link to this publication:
author
organization
year
type
journalArticle (original)
publication status
published
subject
journal title
COMPUTER PHYSICS COMMUNICATIONS
Comput. Phys. Commun.
volume
100
issue
1-2
pages
71-80 pages
Web of Science type
Article
ISSN
0010-4655
language
English
UGent publication?
yes
classification
A1
id
182086
handle
http://hdl.handle.net/1854/LU-182086
date created
2004-01-14 13:41:00
date last changed
2016-12-19 15:38:43
@article{182086,
  author       = {IXARU, LG and DEMEYER, H and Vanden Berghe, Guido and Van Daele, Marnix},
  issn         = {0010-4655},
  journal      = {COMPUTER PHYSICS COMMUNICATIONS},
  language     = {eng},
  number       = {1-2},
  pages        = {71--80},
  title        = {EXPFIT4 - A FORTRAN program for the numerical solution of systems of nonlinear second-order initial-value problems.},
  volume       = {100},
  year         = {1997},
}

Chicago
IXARU, LG, H DEMEYER, Guido Vanden Berghe, and Marnix Van Daele. 1997. “EXPFIT4 - A FORTRAN Program for the Numerical Solution of Systems of Nonlinear Second-order Initial-value Problems.” Computer Physics Communications 100 (1-2): 71–80.
APA
IXARU, LG, DEMEYER, H., Vanden Berghe, G., & Van Daele, M. (1997). EXPFIT4 - A FORTRAN program for the numerical solution of systems of nonlinear second-order initial-value problems. COMPUTER PHYSICS COMMUNICATIONS, 100(1-2), 71–80.
Vancouver
1.
IXARU L, DEMEYER H, Vanden Berghe G, Van Daele M. EXPFIT4 - A FORTRAN program for the numerical solution of systems of nonlinear second-order initial-value problems. COMPUTER PHYSICS COMMUNICATIONS. 1997;100(1-2):71–80.
MLA
IXARU, LG, H DEMEYER, Guido Vanden Berghe, et al. “EXPFIT4 - A FORTRAN Program for the Numerical Solution of Systems of Nonlinear Second-order Initial-value Problems.” COMPUTER PHYSICS COMMUNICATIONS 100.1-2 (1997): 71–80. Print.