1. Use the diagram below to answer the following questions a. Determine the normal stress exerted on the oblique face of the shaded triangular element. b. Find the shearing stress exerted on the oblique face of the shaded triangular element. sO MPa 40 MP.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Problem 1.1MA
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1. Use the diagram below to answer the
following questions
a. Determine the normal stress
145 MPa
exerted on the oblique face of the
shaded triangular element.
b. Find the shearing stress exerted
on the oblique face of the shaded
triangular element.
16 MPa
60 MPa
Figure P3
SO MPa
4. Use the diagrams below to answer the
following questions
a. Determine the normal and
40 MPa
shearing stress ox after the
element shown has been rotated
through 25° clockwise.
b. Find the shearing stress after the
element shown has been rotated
Figure PI
through 10° counterclockwise.
2. Use the diagram below to answer the
following questions
a. Determine the principal planes.
b. Compute for the maximum
principal stress.
| 60 MPa
20 MPa
40 MPa
48 MPa
16 MPa
Figure P4
60 MPa
5. The grain of a wooden member forms
an angle of 15° with the vertical.
|15 MPA
Figure P2
3. Use the diagram below to answer the
following questions
a. Determine the orientation of the
3 MP.
planes of maximum in-plane
shearing stress.
b. Find the maximum in-plane
shearing stress.
c. Compute for the corresponding
normal stress.
Figure P5
Transcribed Image Text:1. Use the diagram below to answer the following questions a. Determine the normal stress 145 MPa exerted on the oblique face of the shaded triangular element. b. Find the shearing stress exerted on the oblique face of the shaded triangular element. 16 MPa 60 MPa Figure P3 SO MPa 4. Use the diagrams below to answer the following questions a. Determine the normal and 40 MPa shearing stress ox after the element shown has been rotated through 25° clockwise. b. Find the shearing stress after the element shown has been rotated Figure PI through 10° counterclockwise. 2. Use the diagram below to answer the following questions a. Determine the principal planes. b. Compute for the maximum principal stress. | 60 MPa 20 MPa 40 MPa 48 MPa 16 MPa Figure P4 60 MPa 5. The grain of a wooden member forms an angle of 15° with the vertical. |15 MPA Figure P2 3. Use the diagram below to answer the following questions a. Determine the orientation of the 3 MP. planes of maximum in-plane shearing stress. b. Find the maximum in-plane shearing stress. c. Compute for the corresponding normal stress. Figure P5
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