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Electric potential

Published output `pze.V` from physics interface `Piezoelectricity`.

Reference

FieldValueDescription
components1
differentiabilityexact-ad
display_nameElectric potential
expressionpze.V
functional_dimensions["global","domain","boundary","edge","point"]
locationnode
namepze.V
plottabletrue
quantity_id
rankscalar
rolenull
studies["stationary","eigenfrequency","eigenvalue","parametric-sweep","sensitivity","optimization","transient"]
study_overrides[{"normalization":"The electrical mode shape is independently scaled so its maximum absolute nodal potential is 1; the raw coupled eigenvector remains in solution.modes.","semantics":"relative-mode-shape","study":"eigenfrequency","unit":"1"},{"normalization":"The electrical mode shape is independently scaled so its maximum absolute nodal potential is 1; the raw coupled eigenvector remains in solution.modes.","semantics":"relative-mode-shape","study":"eigenvalue","unit":"1"}]
topology_methods[]
unitV

Published output pze.V from physics interface Piezoelectricity.

Contract

PropertyValue
components1
differentiabilityexact-ad
display_nameElectric potential
expressionpze.V
functional_dimensions["global","domain","boundary","edge","point"]
locationnode
namepze.V
plottabletrue
quantity_id``
rankscalar
rolenull
studies["stationary","eigenfrequency","eigenvalue","parametric-sweep","sensitivity","optimization","transient"]
study_overrides[{"normalization":"The electrical mode shape is independently scaled so its maximum absolute nodal potential is 1; the raw coupled eigenvector remains in solution.modes.","semantics":"relative-mode-shape","study":"eigenfrequency","unit":"1"},{"normalization":"The electrical mode shape is independently scaled so its maximum absolute nodal potential is 1; the raw coupled eigenvector remains in solution.modes.","semantics":"relative-mode-shape","study":"eigenvalue","unit":"1"}]
topology_methods[]
unitV