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A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, then
Take E = 200 GPa and μ = 0.3
  • a)
    The tensile stress developed in the joint is 37.5 MPa
  • b)
    The shear stress developed in the joint is 10.25 MPa
  • c)
    The tensile stress developed in the joint is 27.6 MPa
  • d)
    The increase in diameter of the cylinder is 0.212 mm
Correct answer is option 'A,D'. Can you explain this answer?
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A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm...
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A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer?
Question Description
A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer? for Mechanical Engineering 2024 is part of Mechanical Engineering preparation. The Question and answers have been prepared according to the Mechanical Engineering exam syllabus. Information about A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer? covers all topics & solutions for Mechanical Engineering 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer?.
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Here you can find the meaning of A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer?, a detailed solution for A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer? has been provided alongside types of A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice A thin cylindrical vessel of mean diameter 1 m is made of plates 20 mm thickness. The joints are formed by welding along helical seams that make an angle of 45° with the axis of the cylinder. If the joint has an internal pressure of 2 MPa, thenTake E = 200 GPa and μ = 0.3a)The tensile stress developed in the joint is 37.5 MPab)The shear stress developed in the joint is 10.25 MPac)The tensile stress developed in the joint is 27.6 MPad)The increase in diameter of the cylinder is 0.212 mmCorrect answer is option 'A,D'. Can you explain this answer? tests, examples and also practice Mechanical Engineering tests.
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