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Bibliography

1
R. Abraham, Linear and Multilinear Algebra,
New York: W. A. Benjamin, Inc., 1966.

2
S. Bilbao, Wave and Scattering Methods for the Numerical Integration of Partial Differential Equations,
PhD thesis, Stanford University, June 2001,
Available online at http://www-ccrma.stanford.edu/~bilbao/.

3
L. Savioja, ``Improving the three-dimensional digital waveguide mesh by interpolation,'' in Proc. Nordic Acoustical Meeting (NAM'98), (Stockholm, Sweden), pp. 265-268, 7-9 Sept. 1998.

4
L. Savioja and V. Välimäki, ``Reducing the dispersion error in the digital waveguide mesh using interpolation and frequency-warping techniques,'' IEEE Trans. Speech and Audio Proc., vol. 8, pp. 184-194, Mar. 2000.

5
L. Savioja and V. Välimäki, ``Interpolated 3-D digital waveguide mesh with frequaency warping,'' 7-11 May 2001,
To appear.

6
J. Stewart, Calculus: Early Transcendentals,
Pacific Grove, California: Brooks/Cole, second ed., 1991.

7
S. Stoffels, ``Full mesh warping techniques,'' in Proc. COST G-6 Conference on Digital Audio Effects, (Verona, Italy), Dec. 7-9 2000.

8
J. Strikwerda, Finite Difference Schemes and Partial Differential Equations,
Pacific Grove, Calif.: Wadsworth and Brooks/Cole Advanced Books and Software, 1989.

9
P. P. Vaidyanathan, Multirate Systems and Filter Banks, p. 288,
Englewood Cliffs, New Jersey: Prentice-Hall, 1993.

10
S. VanDuyne and J. S. III, ``Physical modelling with the 2D digital waveguide mesh,'' in Proc. Int. Computer Music Conf., (Tokyo, Japan), pp. 40-47, 1993.

11
S. VanDuyne and J. Smith, ``The 3D tetrahedral digital waveguide mesh with musical applications,'' in Proc. Int. Computer Music Conf., (Hong Kong), pp. 9-16, 18-21 Aug. 1996.


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