cmath: Done.

This commit is contained in:
Julien Palard 2017-12-14 08:57:14 +01:00
parent a0487b756c
commit 28a81295c8

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@ -8,7 +8,7 @@ msgstr ""
"Project-Id-Version: Python 3.6\n"
"Report-Msgid-Bugs-To: \n"
"POT-Creation-Date: 2017-09-21 09:15+0200\n"
"PO-Revision-Date: 2017-09-22 11:03+0200\n"
"PO-Revision-Date: 2017-12-14 08:56+0100\n"
"Last-Translator: \n"
"Language-Team: \n"
"Language: fr\n"
@ -367,29 +367,36 @@ msgstr "La constante mathématique *e*, en tant que flottant."
#: ../Doc/library/cmath.rst:258
msgid "The mathematical constant *τ*, as a float."
msgstr ""
msgstr "La constante mathématique *τ*, sous forme de flottant."
#: ../Doc/library/cmath.rst:264
msgid "Floating-point positive infinity. Equivalent to ``float('inf')``."
msgstr ""
"Nombre à virgule flottante positif infini. Équivaut à ``float('inf')``."
#: ../Doc/library/cmath.rst:270
msgid ""
"Complex number with zero real part and positive infinity imaginary part. "
"Equivalent to ``complex(0.0, float('inf'))``."
msgstr ""
"Nombre complexe dont a partie réelle vaut zéro et la partie imaginaire un "
"infini positif. Équivalent à ``complex(0.0, float('inf'))``."
#: ../Doc/library/cmath.rst:277
msgid ""
"A floating-point \"not a number\" (NaN) value. Equivalent to "
"``float('nan')``."
msgstr ""
"Un nombre à virgule flottante *NaN* (*Not a number*). Équivalent à "
"``float('nan')``."
#: ../Doc/library/cmath.rst:284
msgid ""
"Complex number with zero real part and NaN imaginary part. Equivalent to "
"``complex(0.0, float('nan'))``."
msgstr ""
"Nombre complexe dont la partie réelle vaut zéro et la partie imaginaire vaut "
"un *NaN*. Équivalent à ``complex(0.0, float('nan'))``."
#: ../Doc/library/cmath.rst:292
msgid ""
@ -435,3 +442,6 @@ msgid ""
"nothing's sign bit. In Iserles, A., and Powell, M. (eds.), The state of the "
"art in numerical analysis. Clarendon Press (1987) pp165--211."
msgstr ""
"Kahan, W: *Branch cuts for complex elementary functions; or, Much ado about "
"nothing's sign bit*. In Iserles, A., and Powell, M. (eds.), *The state of "
"the art in numerical analysis*. Clarendon Press (1987) pp165--211."