A thin spherical shell 1 m in diameter with its wall of 12 mm thickness is filled with a fluid at atmospheric pressure. Take E = 200 GN/m² and Poisson's ratio 0.3. The increase in diameter is (a) 0.111 mm (b) 0.222 mm (c) 0.333 mm (d) None A thin spherical shell 1 m in diameter with its wall of 12mm thickness is filled with a fluid at atmospheric pressure. Take E = 200 GN/m² and Poisson's ratio 0.3. The internal fluid pressure developed is (a) 1.5 MPa (b) 2.5 MPa (c) 0.5 MPa (d) None

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A thin spherical shell 1 m in diameter with its wall of 12 mm thickness is filled with a fluid at
atmospheric pressure. Take E = 200 GN/m2 and Poisson's ratio 0.3. The increase in diameter is
(a) 0.111 mm (b) 0.222 mm (c) 0.333 mm (d) None
4.
5.
A thin spherical shell 1 m in diameter with its wall of 12mm thickness is filled with a fluid at
atmospheric pressure. Take E = 200 GN/m2 and Poisson's ratio 0.3. The internal fluid pressure
developed is (a) 1.5 MPa (b) 2.5 MPa (c) 0.5 MPa (d) None
Transcribed Image Text:A thin spherical shell 1 m in diameter with its wall of 12 mm thickness is filled with a fluid at atmospheric pressure. Take E = 200 GN/m2 and Poisson's ratio 0.3. The increase in diameter is (a) 0.111 mm (b) 0.222 mm (c) 0.333 mm (d) None 4. 5. A thin spherical shell 1 m in diameter with its wall of 12mm thickness is filled with a fluid at atmospheric pressure. Take E = 200 GN/m2 and Poisson's ratio 0.3. The internal fluid pressure developed is (a) 1.5 MPa (b) 2.5 MPa (c) 0.5 MPa (d) None
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