6. LOCATE THE CENTER OF GRAVITY (C.G.) AND DETERMINE THE MOMENT OF INERTIA ALONG THE x-x AXIS OF THE SECTION SHOWN BELOW. 300 300 100 300 200 750
6. LOCATE THE CENTER OF GRAVITY (C.G.) AND DETERMINE THE MOMENT OF INERTIA ALONG THE x-x AXIS OF THE SECTION SHOWN BELOW. 300 300 100 300 200 750
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Please answer number 6 only Thank you
![5. SOLVE FOR THE REACTIONS OF THE BEAM SHOWN BELOW AND
DRAW THE SHEAR AND MOMENT DIAGRAMS. INCLUDE THE SHEAR AND
MOMENT EQUATIONS.
A
B
a
6. LOCATE THE CENTER OF GRAVITY (C.G.) AND DETERMINE THE MOMENT OF
INERTIA ALONG THE x-x AXIS OF THE SECTION SHOWN BELOW.
300 300
100
300
+C.G.
200
-750
7. ASSUME THE BEAM IN ITEM 5. HAS A CROSS-SECTION SIMILAR TO THE FIGURE
SHOWN IN ITEM 6. DETERMINE THE MAXIMUM TENSILE AND COMPRESSIVE
FLEXURAL STRESS, fb, EXPERIENCED BY THE BEAM.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdde176d9-169b-42ed-ab75-07a9548e3c9f%2F80dc9c0b-2589-485a-9cc8-b03d83b8aea5%2Fu9mba3o_processed.png&w=3840&q=75)
Transcribed Image Text:5. SOLVE FOR THE REACTIONS OF THE BEAM SHOWN BELOW AND
DRAW THE SHEAR AND MOMENT DIAGRAMS. INCLUDE THE SHEAR AND
MOMENT EQUATIONS.
A
B
a
6. LOCATE THE CENTER OF GRAVITY (C.G.) AND DETERMINE THE MOMENT OF
INERTIA ALONG THE x-x AXIS OF THE SECTION SHOWN BELOW.
300 300
100
300
+C.G.
200
-750
7. ASSUME THE BEAM IN ITEM 5. HAS A CROSS-SECTION SIMILAR TO THE FIGURE
SHOWN IN ITEM 6. DETERMINE THE MAXIMUM TENSILE AND COMPRESSIVE
FLEXURAL STRESS, fb, EXPERIENCED BY THE BEAM.
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