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83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

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Page 1: 83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

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Page 2: 83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

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Page 3: 83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

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Page 4: 83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

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Page 5: 83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

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Page 6: 83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

| UPTU Notes |

www.uptunotes.com

Page 7: 83781RWHV · 3. (c) Determine the area moment Of inertia of the composite area shown in figure about x and y axis. 20 mm 3Q mm 20 mm 10 mm (d) A simply supported beam of 8 m length

| UPTU Notes |

www.uptunotes.com