(a) Construct Mohr's circle for an element in a uniaxial state of stress (b) Use this Mohr's circle to derive the equation for the normal stress On and shear stress En on the n-face. The equations should depend on Ox and θ (c) Use the Mohr's circle to determine the planes on which the maximum shear stress acts. Sketch a properly oriented maximum-shear-stress element and indicate the normal and shear stresses acting on its faces. Ơn nt o, Note: for (b), the angle θ is between 0 and 90° and is positive

Elements Of Electromagnetics
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(a) Construct Mohr's circle for an element in a uniaxial state of stress
(b) Use this Mohr's circle to derive the equation for the normal stress On and shear stress En on the n-face. The
equations should depend on Ox and θ
(c) Use the Mohr's circle to determine the planes on which the maximum shear stress acts. Sketch a properly
oriented maximum-shear-stress element and indicate the normal and shear stresses acting on its faces.
Ơn
nt
o,
Note: for (b), the angle θ is between 0 and 90° and is positive
Transcribed Image Text:(a) Construct Mohr's circle for an element in a uniaxial state of stress (b) Use this Mohr's circle to derive the equation for the normal stress On and shear stress En on the n-face. The equations should depend on Ox and θ (c) Use the Mohr's circle to determine the planes on which the maximum shear stress acts. Sketch a properly oriented maximum-shear-stress element and indicate the normal and shear stresses acting on its faces. Ơn nt o, Note: for (b), the angle θ is between 0 and 90° and is positive
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