numpy_ipps.constants.maths.float32 module¶
Maths numerical constants as float32.
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numpy_ipps.constants.maths.float32.EB_C= <cdata 'float' 1.6066950559616089>¶ Erdos-Borwein constant as float32, use
EBif you need andarray
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numpy_ipps.constants.maths.float32.G_C= <cdata 'float' 0.9159656167030334>¶ Catalan’s constant as float32, use
Gif you need andarray
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numpy_ipps.constants.maths.float32.I1_C= <cdata 'float' 0.7834305167198181>¶ Sophomore’s dream 1 as float32, use
I1if you need andarray
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numpy_ipps.constants.maths.float32.I2_C= <cdata 'float' 1.2912859916687012>¶ Sophomore’s dream 2 as float32, use
I2if you need andarray
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numpy_ipps.constants.maths.float32.d_C= <cdata 'float' 0.7390851378440857>¶ Dottie number as float32, use
dif you need andarray
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numpy_ipps.constants.maths.float32.df_C= <cdata 'float' 0.6309297680854797>¶ Fractal dimension of the Cantor set as float32, use
dfif you need andarray
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numpy_ipps.constants.maths.float32.ePi_C= <cdata 'float' 23.14067840576172>¶ Gelfond’s constant as float32, use
ePiif you need andarray
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numpy_ipps.constants.maths.float32.e_C= <cdata 'float' 2.7182817459106445>¶ Euler’s number as float32, use
eif you need andarray
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numpy_ipps.constants.maths.float32.fourPi_C= <cdata 'float' 12.566370010375977>¶ 4 pias float32, usefourPiif you need andarray
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numpy_ipps.constants.maths.float32.gamma_C= <cdata 'float' 0.5772156715393066>¶ Euler–Mascheroni constant as float32, use
gammaif you need andarray
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numpy_ipps.constants.maths.float32.ln2_C= <cdata 'float' 0.6931470632553101>¶ Natural logarithm
ln(2)as float32, useln2if you need andarray
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numpy_ipps.constants.maths.float32.ln3_C= <cdata 'float' 1.0986120700836182>¶ Natural logarithm
ln(3)as float32, useln3if you need andarray
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numpy_ipps.constants.maths.float32.phi_C= <cdata 'float' 1.6180340051651>¶ Golden ration as float32, use
phiif you need andarray
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numpy_ipps.constants.maths.float32.pi_C= <cdata 'float' 3.141592025756836>¶ pias float32, usepiif you need andarray
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numpy_ipps.constants.maths.float32.sqrt2_C= <cdata 'float' 1.4142135381698608>¶ Square root of 2 as float32, use
sqrt2if you need andarray
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numpy_ipps.constants.maths.float32.sqrt3_C= <cdata 'float' 1.7320507764816284>¶ Square root of 3 as float32, use
sqrt3if you need andarray
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numpy_ipps.constants.maths.float32.twoPi_C= <cdata 'float' 6.283185005187988>¶ 2 pias float32, usetwoPiif you need andarray
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numpy_ipps.constants.maths.float32.zeta3_C= <cdata 'float' 1.202056884765625>¶ Apery’s constant as float32, use
zeta3if you need andarray