Find the natural frequencies mode shapes of this system usin
     Find the natural frequencies mode shapes of this system (using your calculator or Matlab)  [20 0  0 6] x + [8, 500 -6000  -6000 7000] x = 0![Find the natural frequencies mode shapes of this system (using your calculator or Matlab) [20 0 0 6] x + [8, 500 -6000 -6000 7000] x = 0Solutioneigenvales lamb  Find the natural frequencies mode shapes of this system (using your calculator or Matlab) [20 0 0 6] x + [8, 500 -6000 -6000 7000] x = 0Solutioneigenvales lamb](/WebImages/11/find-the-natural-frequencies-mode-shapes-of-this-system-usin-1005659-1761518408-0.webp) 
  
  Solution
eigenvales lambda 1 = 134.36, lambda 2= 1457.34
solving the nmatrix eqns AU =Lambda U
U1/U2 fromnfirst eigenvalue is .7172
U1/U2 from second eigenvalue is 0.852
hence could be written (1, 0.7172), (1, 0.852)
can be normalised is reqd.
![Find the natural frequencies mode shapes of this system (using your calculator or Matlab) [20 0 0 6] x + [8, 500 -6000 -6000 7000] x = 0Solutioneigenvales lamb  Find the natural frequencies mode shapes of this system (using your calculator or Matlab) [20 0 0 6] x + [8, 500 -6000 -6000 7000] x = 0Solutioneigenvales lamb](/WebImages/11/find-the-natural-frequencies-mode-shapes-of-this-system-usin-1005659-1761518408-0.webp)
