(New page: Complex numbers can be used to represent waves and calculate their behavior. The simplest example of complex waves would be a simple mass, m, attached to a spring of stiffness S. insert p...)
 
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Complex numbers can be used to represent waves and calculate their behavior. The simplest example of complex waves would be a simple mass, m, attached to a spring of stiffness S.
 
Complex numbers can be used to represent waves and calculate their behavior. The simplest example of complex waves would be a simple mass, m, attached to a spring of stiffness S.
  
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[[ScottHamiltonspring_ECE301Fall2008mboutin.jpg]]
  
 
The natural frequency of oscillation for this system is computed as <math> \omega_0 ^2 = \frac{S}{m} </math>
 
The natural frequency of oscillation for this system is computed as <math> \omega_0 ^2 = \frac{S}{m} </math>

Revision as of 16:18, 4 September 2008

Complex numbers can be used to represent waves and calculate their behavior. The simplest example of complex waves would be a simple mass, m, attached to a spring of stiffness S.

ScottHamiltonspring_ECE301Fall2008mboutin.jpg

The natural frequency of oscillation for this system is computed as $ \omega_0 ^2 = \frac{S}{m} $

Alumni Liaison

Ph.D. on Applied Mathematics in Aug 2007. Involved on applications of image super-resolution to electron microscopy

Francisco Blanco-Silva