symbian-qemu-0.9.1-12/python-2.6.1/Doc/library/cmath.rst
author johnathan.white@2718R8BGH51.accenture.com
Mon, 08 Mar 2010 18:45:03 +0000
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permissions -rw-r--r--
Modify framebuffer and NGA framebuffer to read screen size from board model dtb file. Optimise memory usuage of frame buffer Add example minigui application with hooks to profiler (which writes results to S:\). Modified NGA framebuffer to run its own dfc queue at high priority
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:mod:`cmath` --- Mathematical functions for complex numbers
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===========================================================
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.. module:: cmath
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   :synopsis: Mathematical functions for complex numbers.
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This module is always available.  It provides access to mathematical functions
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for complex numbers.  The functions in this module accept integers,
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floating-point numbers or complex numbers as arguments. They will also accept
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any Python object that has either a :meth:`__complex__` or a :meth:`__float__`
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method: these methods are used to convert the object to a complex or
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floating-point number, respectively, and the function is then applied to the
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result of the conversion.
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.. note::
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   On platforms with hardware and system-level support for signed
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   zeros, functions involving branch cuts are continuous on *both*
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   sides of the branch cut: the sign of the zero distinguishes one
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   side of the branch cut from the other.  On platforms that do not
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   support signed zeros the continuity is as specified below.
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Complex coordinates
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-------------------
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Complex numbers can be expressed by two important coordinate systems.
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Python's :class:`complex` type uses rectangular coordinates where a number
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on the complex plain is defined by two floats, the real part and the imaginary
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part.
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Definition::
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   z = x + 1j * y
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   x := real(z)
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   y := imag(z)
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In engineering the polar coordinate system is popular for complex numbers. In
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polar coordinates a complex number is defined by the radius *r* and the phase
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angle *phi*. The radius *r* is the absolute value of the complex, which can be
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viewed as distance from (0, 0). The radius *r* is always 0 or a positive float.
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The phase angle *phi* is the counter clockwise angle from the positive x axis,
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e.g. *1* has the angle *0*, *1j* has the angle *π/2* and *-1* the angle *-π*.
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.. note::
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   While :func:`phase` and func:`polar` return *+π* for a negative real they
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   may return *-π* for a complex with a very small negative imaginary
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   part, e.g. *-1-1E-300j*.
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Definition::
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   z = r * exp(1j * phi)
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   z = r * cis(phi)
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   r := abs(z) := sqrt(real(z)**2 + imag(z)**2)
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   phi := phase(z) := atan2(imag(z), real(z))
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   cis(phi) := cos(phi) + 1j * sin(phi)
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.. function:: phase(x)
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   Return phase, also known as the argument, of a complex.
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   .. versionadded:: 2.6
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.. function:: polar(x)
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   Convert a :class:`complex` from rectangular coordinates to polar 
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   coordinates. The function returns a tuple with the two elements
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   *r* and *phi*. *r* is the distance from 0 and *phi* the phase 
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   angle.
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   .. versionadded:: 2.6
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.. function:: rect(r, phi)
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   Convert from polar coordinates to rectangular coordinates and return
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   a :class:`complex`.
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   .. versionadded:: 2.6
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cmath functions
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---------------
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.. function:: acos(x)
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   Return the arc cosine of *x*. There are two branch cuts: One extends right from
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   1 along the real axis to ∞, continuous from below. The other extends left from
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   -1 along the real axis to -∞, continuous from above.
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.. function:: acosh(x)
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   Return the hyperbolic arc cosine of *x*. There is one branch cut, extending left
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   from 1 along the real axis to -∞, continuous from above.
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.. function:: asin(x)
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   Return the arc sine of *x*. This has the same branch cuts as :func:`acos`.
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.. function:: asinh(x)
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   Return the hyperbolic arc sine of *x*. There are two branch cuts:
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   One extends from ``1j`` along the imaginary axis to ``∞j``,
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   continuous from the right.  The other extends from ``-1j`` along
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   the imaginary axis to ``-∞j``, continuous from the left.
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   .. versionchanged:: 2.6
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      branch cuts moved to match those recommended by the C99 standard
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.. function:: atan(x)
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   123
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   Return the arc tangent of *x*. There are two branch cuts: One extends from
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   ``1j`` along the imaginary axis to ``∞j``, continuous from the right. The
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   other extends from ``-1j`` along the imaginary axis to ``-∞j``, continuous
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   from the left.
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   128
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   .. versionchanged:: 2.6
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      direction of continuity of upper cut reversed
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2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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.. function:: atanh(x)
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   Return the hyperbolic arc tangent of *x*. There are two branch cuts: One
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   extends from ``1`` along the real axis to ``∞``, continuous from below. The
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   other extends from ``-1`` along the real axis to ``-∞``, continuous from
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   138
   above.
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   139
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   .. versionchanged:: 2.6
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      direction of continuity of right cut reversed
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   142
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   144
.. function:: cos(x)
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   145
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   Return the cosine of *x*.
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   147
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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.. function:: cosh(x)
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   Return the hyperbolic cosine of *x*.
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   152
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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.. function:: exp(x)
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2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   Return the exponential value ``e**x``.
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   157
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   158
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   159
.. function:: isinf(x)
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   160
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   Return *True* if the real or the imaginary part of x is positive
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   or negative infinity.
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   163
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   .. versionadded:: 2.6
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2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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.. function:: isnan(x)
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   Return *True* if the real or imaginary part of x is not a number (NaN).
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2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   171
   .. versionadded:: 2.6
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2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   173
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   174
.. function:: log(x[, base])
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   175
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   Returns the logarithm of *x* to the given *base*. If the *base* is not
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   specified, returns the natural logarithm of *x*. There is one branch cut, from 0
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   along the negative real axis to -∞, continuous from above.
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   179
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   .. versionchanged:: 2.4
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      *base* argument added.
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   182
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   183
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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.. function:: log10(x)
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   185
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   186
   Return the base-10 logarithm of *x*. This has the same branch cut as
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   187
   :func:`log`.
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   188
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   189
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   190
.. function:: sin(x)
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   191
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   192
   Return the sine of *x*.
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   193
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   194
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   195
.. function:: sinh(x)
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   196
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   197
   Return the hyperbolic sine of *x*.
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   198
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   199
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   200
.. function:: sqrt(x)
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   201
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   202
   Return the square root of *x*. This has the same branch cut as :func:`log`.
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   203
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   204
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.. function:: tan(x)
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   206
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   207
   Return the tangent of *x*.
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   208
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   209
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   210
.. function:: tanh(x)
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   211
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   212
   Return the hyperbolic tangent of *x*.
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   213
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   214
The module also defines two mathematical constants:
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   215
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   216
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   217
.. data:: pi
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   218
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   219
   The mathematical constant *pi*, as a float.
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   220
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   221
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   222
.. data:: e
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   223
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   224
   The mathematical constant *e*, as a float.
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   225
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   226
.. index:: module: math
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   227
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   228
Note that the selection of functions is similar, but not identical, to that in
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   229
module :mod:`math`.  The reason for having two modules is that some users aren't
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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diff changeset
   230
interested in complex numbers, and perhaps don't even know what they are.  They
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   231
would rather have ``math.sqrt(-1)`` raise an exception than return a complex
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   232
number. Also note that the functions defined in :mod:`cmath` always return a
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   233
complex number, even if the answer can be expressed as a real number (in which
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   234
case the complex number has an imaginary part of zero).
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   235
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   236
A note on branch cuts: They are curves along which the given function fails to
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   237
be continuous.  They are a necessary feature of many complex functions.  It is
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   238
assumed that if you need to compute with complex functions, you will understand
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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diff changeset
   239
about branch cuts.  Consult almost any (not too elementary) book on complex
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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diff changeset
   240
variables for enlightenment.  For information of the proper choice of branch
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   241
cuts for numerical purposes, a good reference should be the following:
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   242
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   243
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   244
.. seealso::
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   245
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   246
   Kahan, W:  Branch cuts for complex elementary functions; or, Much ado about
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   247
   nothing's sign bit.  In Iserles, A., and Powell, M. (eds.), The state of the art
2fb8b9db1c86 Initial QEMU (symbian-qemu-0.9.1-12) import
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   in numerical analysis. Clarendon Press (1987) pp165-211.
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