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This book offers an integrated introduction to the topic of
stability and vibration. Strikingly, it describes stability as a
function of boundary conditions and eigenfrequency as a function of
both boundary conditions and column force. Based on a post graduate
course held by the author at the University of Southern Denmark, it
reports on fundamental formulas and makes uses of graphical
representation to promote understanding. Thanks to the emphasis put
on analytical methods and numerical results, the book is meant to
make students and engineers familiar with all fundamental equations
and their derivation, thus stimulating them to write interactive
and dynamic programs to analyze instability and vibrational modes.
This book offers an integrated introduction to the topic of
stability and vibration. Strikingly, it describes stability as a
function of boundary conditions and eigenfrequency as a function of
both boundary conditions and column force. Based on a post graduate
course held by the author at the University of Southern Denmark, it
reports on fundamental formulas and makes uses of graphical
representation to promote understanding. Thanks to the emphasis put
on analytical methods and numerical results, the book is meant to
make students and engineers familiar with all fundamental equations
and their derivation, thus stimulating them to write interactive
and dynamic programs to analyze instability and vibrational modes.
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