The state of stress at a certain point in a stressed body is as shown in the figure. Normal stress in x-direction is 80 MPa (Tensile) and in y-direction is (Compressive). The radius of the Mohr's circle for this state of stress will be 40 MPa = 40 MPa O, = 80 MPa + Ox = 80 MPa Oy = 40 MPa (а) 60 MPa (b) 40 MPa (c) 20 MPа (d) 10 MPа
The state of stress at a certain point in a stressed body is as shown in the figure. Normal stress in x-direction is 80 MPa (Tensile) and in y-direction is (Compressive). The radius of the Mohr's circle for this state of stress will be 40 MPa = 40 MPa O, = 80 MPa + Ox = 80 MPa Oy = 40 MPa (а) 60 MPa (b) 40 MPa (c) 20 MPа (d) 10 MPа
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The state of stress at a certain point in a
stressed body is as shown in the figure.
Normal stress in x-direction is 80 MPa
(Tensile) and in y-direction is 40 MPa
(Compressive). The radius of the Mohr's circle
for this state of stress will be
O, = 40 MPa
O, = 80 MPa +
Ox
= 80 MPa
Oy
= 40 MPa
(а)
60 MPа
(b)
40 MPa
(c)
20 MPa
(d)
10 MPa](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc19a0799-0f7c-4353-ba79-a667c6139ca4%2Fc11625e5-bcb1-4c62-b3d3-edc7de7f5892%2Fz7ocvy6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The state of stress at a certain point in a
stressed body is as shown in the figure.
Normal stress in x-direction is 80 MPa
(Tensile) and in y-direction is 40 MPa
(Compressive). The radius of the Mohr's circle
for this state of stress will be
O, = 40 MPa
O, = 80 MPa +
Ox
= 80 MPa
Oy
= 40 MPa
(а)
60 MPа
(b)
40 MPa
(c)
20 MPa
(d)
10 MPa
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