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If the result of any computation would be a complex number whose real part is of type rational and whose imaginary part is zero, the result is converted to the rational which is the real part.
Let λ be a complex number.
Let μ be a complex number.
Let a be a complex number such that (aneq0).
Let λ be a complex number with (lambdaneq1).
Proof Let λ be a complex number other than 1.
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It's a complex number, with Hargrove shining in the background harmonies but leaving ample room to showcase his band, in particular Jason Marshall on baritone saxophone.
Consequently, impedance is a complex number, the real part of impedance refers to resistance and the imaginary part refers to reactance.
And rather than pushing just a complex exponential through the system, we've pushed a more general time function e to the st, where s is a complex number with both a real part and an imaginary part.
We will show that the inner product of with the th ''basis sinusoid" is a measure of ''how much" of is present in and at ''what phase" (since it is a complex number).
The formula for calculating these numbers is zn+1 = zn2 + c, where c is a complex number and n (representing the digits 1 to infinity) counts the number of times the calculation has been performed.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.
Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com