The force vs. elongation relationship for a given body is dependent on the body's geometry as well as its material properties. The stress vs. strain relationship, is independent of body geometry and dependent only on material properties. Engineered structures are typically designed such that deformations due to loads encountered in service are small. Since deformations are small we can usually use the pre-deformation geometry to relate forces on an FBD, even though subsequent deformation would change that geometry. are these true or false?

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The force vs. elongation relationship for a
given body is dependent on the body's
geometry as well as its material properties.
The stress vs. strain relationship, is
independent of body geometry and
dependent only on material properties.
Engineered structures are typically
designed such that deformations due to
loads encountered in service are small.
Since deformations are small we can
usually use the pre-deformation geometry
to relate forces on an FBD, even though
subsequent deformation would change
that geometry.
are these true or false?
Transcribed Image Text:The force vs. elongation relationship for a given body is dependent on the body's geometry as well as its material properties. The stress vs. strain relationship, is independent of body geometry and dependent only on material properties. Engineered structures are typically designed such that deformations due to loads encountered in service are small. Since deformations are small we can usually use the pre-deformation geometry to relate forces on an FBD, even though subsequent deformation would change that geometry. are these true or false?
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