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[[Category:Euler's formula]]
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[[Category:complex numbers]]
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[[Category:MA453]]
 
== Euler's Formula ==
 
== Euler's Formula ==
  
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Basically, it is a mathematical formula in complex analysis in the form of:
 
Basically, it is a mathematical formula in complex analysis in the form of:
  
<math>e^{ix} = \cos x + i\sin x \!</math>
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:<math>e^{ix} = \cos x + i\sin x \!</math>
  
 
where i is the imaginary number, and x is any real number.
 
where i is the imaginary number, and x is any real number.
  
  
Interestingly, although it is named after the brilliant mathematician Leonhard Euler, he was not the first to prove this formula.  It was Roger Cotes who had proven it for the very first time in 1714.
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Interestingly, although it is named after the brilliant mathematician Leonhard Euler, he was not the first to prove this formula.  It was Roger Cotes who had proven it for the first time in 1714.  Euler had published the formula in the form stated above in 1748.

Latest revision as of 06:04, 23 September 2011

Euler's Formula


Basically, it is a mathematical formula in complex analysis in the form of:

$ e^{ix} = \cos x + i\sin x \! $

where i is the imaginary number, and x is any real number.


Interestingly, although it is named after the brilliant mathematician Leonhard Euler, he was not the first to prove this formula. It was Roger Cotes who had proven it for the first time in 1714. Euler had published the formula in the form stated above in 1748.

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Abstract algebra continues the conceptual developments of linear algebra, on an even grander scale.

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