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Models Bodies of Complex Shape

- Can Handle General Loading/Boundary Conditions

- Models Bodies Composed of Composite and Multiphase Materials

- Model is Easily Refined for Improved Accuracy by Varying

Element Size and Type

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11y ago
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7y ago

Finite element analysis is needed in many fields of engineering (e.g. aerospace engineering, thermodynamic engineering, mechanical engineering) and science (e.g. meteorology, hydrology) to determine the behaviour of dynamic physical systems acting within a space composed of complicated shapes of a variety of different materials with widely varying properties. By dividing such systems into many smaller "finite elements" each of a simple homogenous nature, finite element analysis can provide a solvable set of mathematical equations that can provide a usable approximation with acceptable accuracy of the behaviour of the complete and very complicated inhomogeneous physical system.

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Q: What are the advantages of the finite element method?
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