The following stress condition is applied to a cubic material. Normal stress in the x direction is 15 Mpa, normal stress in the z direction is -7 Mpa and the shear stress in the x-z plane is 59 Mpa. (a) Write the stress tensor (b) Find the maximum normal stress (c) Find the angle with respect to the x-axis at which the maximum normal stress is applied (d) Find the maximum shear stress (e) Determine the angle with respect to the x-axis at which the maximum shear stress is experienced

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The following stress condition is applied to a cubic material.

Normal stress in the x direction is 15 MPa, normal stress in the z direction is -7 MPa, and the shear stress in the x-z plane is 59 MPa.

(a) Write the stress tensor

(b) Find the maximum normal stress

(c) Find the angle with respect to the x-axis at which the maximum normal stress is applied

(d) Find the maximum shear stress

(e) Determine the angle with respect to the x-axis at which the maximum shear stress is experienced
Transcribed Image Text:The following stress condition is applied to a cubic material. Normal stress in the x direction is 15 MPa, normal stress in the z direction is -7 MPa, and the shear stress in the x-z plane is 59 MPa. (a) Write the stress tensor (b) Find the maximum normal stress (c) Find the angle with respect to the x-axis at which the maximum normal stress is applied (d) Find the maximum shear stress (e) Determine the angle with respect to the x-axis at which the maximum shear stress is experienced
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