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authorDaniel Krenn <git@danielkrenn.at>2016-01-31 15:19:09 +0100
committerDaniel Krenn <git@danielkrenn.at>2016-01-31 15:19:09 +0100
commitcc616fb5d79d8b561015cf7777db49be38de0115 (patch)
treedf92b96ab9f92b54beb7b9a42493b23991d9904a
parentTrac #10519: fix indention in ReST (diff)
Trac #10519: fix doctest (simplify symbolic coefficients)
-rw-r--r--src/sage/rings/asymptotic/asymptotics_multivariate_generating_functions.py4
1 files changed, 4 insertions, 0 deletions
diff --git a/src/sage/rings/asymptotic/asymptotics_multivariate_generating_functions.py b/src/sage/rings/asymptotic/asymptotics_multivariate_generating_functions.py
index 9cb2163..3f35407 100644
--- a/src/sage/rings/asymptotic/asymptotics_multivariate_generating_functions.py
+++ b/src/sage/rings/asymptotic/asymptotics_multivariate_generating_functions.py
@@ -114,6 +114,10 @@ Another smooth point example (Example 5.4 of [RaWi2008a]_)::
Computing derivatives of more auxiliary functions...
Computing second order differential operator actions...
sage: asy
+ (1/24*2^(2/3)*(sqrt(3) + 4/(sqrt(3) + I) + I)*gamma(1/3)/(pi*r^(1/3)),
+ 1,
+ 1/24*2^(2/3)*(sqrt(3) + 4/(sqrt(3) + I) + I)*gamma(1/3)/(pi*r^(1/3)))
+ sage: r = SR('r'); tuple((a*r^(1/3)).full_simplify() / r^(1/3) for a in asy) # make nicer coefficients
(1/12*sqrt(3)*2^(2/3)*gamma(1/3)/(pi*r^(1/3)),
1,
1/12*sqrt(3)*2^(2/3)*gamma(1/3)/(pi*r^(1/3)))