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<&]LCaNi F8Eʁ1NaHR?]?@XyF^QZaP{=Fpn":q ?2$Zzw;n\9BC&lj!ƹaw 34v,F\Nv*d]2o^h=2%gh6wMHWh; z n{C5ɕlv^f *n O.&yUu6[V8XUXCż ڿ$H5WڋBt=҉N2na lku^;_q?b%/39_eq*6Vl{$wJ({A7VA:d'$n^jw=^YT{ sH13X%|Tq zgBFFm;D ̴ > = ? d g X \ D RT Sd W \ bD bd f f g hC ( hj 8 hp 9 h : kz > m| @ m G m H q I v X w Y w( \ wD ] { ^ b ] d e f l t u 8 v x w D x y C R-waveslim 1.6.1 5.fc12 R module, Basic wavelet routines for 1,2 and 3-dimensional signal processing Basic wavelet routines for time series (1D), image (2D) and array (3D) analysis. The code provided here is based on wavelet methodology developed in Percival and Walden (2000); Gencay, Selcuk and Whitcher (2001); the dual-tree complex wavelet transform (CWT) from Kingsbury (1999, 2001) as implemented by Selesnick; and Hilbert wavelet pairs (Selesnick 2001, 2002). All figures in chapters 4-7 of GSW (2001) are reproducible using this package and R code available at the book website(s) below. Jofxenbuilder4.fedora.phx.redhat.com "Koji Fedora Project GPLv2+ Fedora Project Applications/Engineering http://waveslim.r-forge.r-project.org/ linux x86_64 /usr/lib/rpm/R-make-search-index.sh /usr/lib/rpm/R-make-search-index.sh . w / n ^ e P N ~ R ! B s % 1 ] 6 @ Y | U ) L X ' [ B j k ! \ L ` &