1. Suppose that the forces acting to the faces are distributed uniformly. Then find the thickness & by the use of: 160KN Зст 60 kN a. Maximum normal stress hypothesis b. Maximum normal strain hypothesis c. Maximum shear stress (Tresca) hypothesis d. Maximum total strain energy hypothesis e. Maximum distortional energy (Von Mises) hypothesis. бст 240KN 240 kN Oy =o', =16 kN / cm² , v = 0.33. 160 kN 60 kN
1. Suppose that the forces acting to the faces are distributed uniformly. Then find the thickness & by the use of: 160KN Зст 60 kN a. Maximum normal stress hypothesis b. Maximum normal strain hypothesis c. Maximum shear stress (Tresca) hypothesis d. Maximum total strain energy hypothesis e. Maximum distortional energy (Von Mises) hypothesis. бст 240KN 240 kN Oy =o', =16 kN / cm² , v = 0.33. 160 kN 60 kN
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![1. Suppose that the forces acting to the
faces are distributed uniformly. Then
find the thickness & by the use of:
160KN
Зст
60 kN
a. Maximum normal stress hypothesis
b. Maximum normal strain hypothesis
c. Maximum shear stress (Tresca)
hypothesis
d. Maximum
hypothesis
e. Maximum distortional energy (Von
Mises) hypothesis.
бст
total strain energy
240KN
240 kN
ON =o, =16 kN / cm² , v = 0.33.
160 kN
60 kN](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F735a2f8f-f814-4df1-b51b-74fce5b381ce%2Fd005bcc9-3f9f-4df9-a56e-f87662593a18%2Fuit81_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. Suppose that the forces acting to the
faces are distributed uniformly. Then
find the thickness & by the use of:
160KN
Зст
60 kN
a. Maximum normal stress hypothesis
b. Maximum normal strain hypothesis
c. Maximum shear stress (Tresca)
hypothesis
d. Maximum
hypothesis
e. Maximum distortional energy (Von
Mises) hypothesis.
бст
total strain energy
240KN
240 kN
ON =o, =16 kN / cm² , v = 0.33.
160 kN
60 kN
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