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If the principal stresses and maximum shearing stresses are of equal numerical value at a point in a stressed body, the state of stress can be termed as?
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If the principal stresses and maximum shearing stresses are of equal n...
Answer:

Elastic limit:
The elastic limit is defined as the maximum stress that a material can withstand without permanent deformation.

Principal stresses:
The principal stresses are defined as the maximum and minimum stresses that act on a particular plane. They are perpendicular to each other and act on mutually perpendicular planes.

Maximum shearing stresses:
The maximum shearing stresses are defined as the maximum difference between the two principal stresses acting on a particular plane.

Mohr's circle:
Mohr's circle is a graphical representation of the state of stress at a particular point in a body. It is used to determine the principal stresses and maximum shearing stresses.

Equal numerical value:
If the principal stresses and maximum shearing stresses are of equal numerical value at a point in a stressed body, the state of stress can be termed as pure shear stress.

Pure shear stress:
Pure shear stress is a state of stress in which the stresses acting on a particular plane are of equal magnitude but opposite in direction. It is characterized by a 45-degree angle on Mohr's circle and is represented by a circle passing through the origin.

Conclusion:
Therefore, if the principal stresses and maximum shearing stresses are of equal numerical value at a point in a stressed body, the state of stress can be termed as pure shear stress.
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If the principal stresses and maximum shearing stresses are of equal numerical value at a point in a stressed body, the state of stress can be termed as?
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