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A round bar made of same material consists of 3 parts each of 100 mm length having diameters of 40 mm, 50 mm and 60 mm, respectively, if the bar is subjected to an axial load of 10 kN, the total elongation of the bar in mm would be (E is the modulus of elasticity in kN/mm2)
  • a)
  • b)
  • c)
  • d)
Correct answer is option 'D'. Can you explain this answer?
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A round bar made of same material consists of 3parts each of 100 mm le...
Total elongation


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A round bar made of same material consists of 3parts each of 100 mm length having diameters of 40 mm, 50 mm and 60 mm, respectively, if the bar is subjected to an axial load of 10 kN, the total elongation of the bar in mm would be (E is the modulus of elasticity in kN/mm2)a)b)c)d)Correct answer is option 'D'. Can you explain this answer?
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A round bar made of same material consists of 3parts each of 100 mm length having diameters of 40 mm, 50 mm and 60 mm, respectively, if the bar is subjected to an axial load of 10 kN, the total elongation of the bar in mm would be (E is the modulus of elasticity in kN/mm2)a)b)c)d)Correct answer is option '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 round bar made of same material consists of 3parts each of 100 mm length having diameters of 40 mm, 50 mm and 60 mm, respectively, if the bar is subjected to an axial load of 10 kN, the total elongation of the bar in mm would be (E is the modulus of elasticity in kN/mm2)a)b)c)d)Correct answer is option '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 round bar made of same material consists of 3parts each of 100 mm length having diameters of 40 mm, 50 mm and 60 mm, respectively, if the bar is subjected to an axial load of 10 kN, the total elongation of the bar in mm would be (E is the modulus of elasticity in kN/mm2)a)b)c)d)Correct answer is option 'D'. Can you explain this answer?.
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