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A cantilever of length 6 m is loaded as shown in the figure below. The maximum deflection in the beam isE = 200 MPa, I = 1 × 10−4 m−4, W = 1 kN.P1 = 3W P2 = 2W P3 = 1Wa) 4.43 mmb) 2.28 mmc) 8.93 mmd) 12.68 mmCorrect answer is option 'C'. Can you explain this answer? for Class 7 2024 is part of Class 7 preparation. The Question and answers have been prepared
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the Class 7 exam syllabus. Information about A cantilever of length 6 m is loaded as shown in the figure below. The maximum deflection in the beam isE = 200 MPa, I = 1 × 10−4 m−4, W = 1 kN.P1 = 3W P2 = 2W P3 = 1Wa) 4.43 mmb) 2.28 mmc) 8.93 mmd) 12.68 mmCorrect answer is option 'C'. Can you explain this answer? covers all topics & solutions for Class 7 2024 Exam.
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A cantilever of length 6 m is loaded as shown in the figure below. The maximum deflection in the beam isE = 200 MPa, I = 1 × 10−4 m−4, W = 1 kN.P1 = 3W P2 = 2W P3 = 1Wa) 4.43 mmb) 2.28 mmc) 8.93 mmd) 12.68 mmCorrect answer is option 'C'. Can you explain this answer?, a detailed solution for A cantilever of length 6 m is loaded as shown in the figure below. The maximum deflection in the beam isE = 200 MPa, I = 1 × 10−4 m−4, W = 1 kN.P1 = 3W P2 = 2W P3 = 1Wa) 4.43 mmb) 2.28 mmc) 8.93 mmd) 12.68 mmCorrect answer is option 'C'. Can you explain this answer? has been provided alongside types of A cantilever of length 6 m is loaded as shown in the figure below. The maximum deflection in the beam isE = 200 MPa, I = 1 × 10−4 m−4, W = 1 kN.P1 = 3W P2 = 2W P3 = 1Wa) 4.43 mmb) 2.28 mmc) 8.93 mmd) 12.68 mmCorrect answer is option 'C'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice A cantilever of length 6 m is loaded as shown in the figure below. The maximum deflection in the beam isE = 200 MPa, I = 1 × 10−4 m−4, W = 1 kN.P1 = 3W P2 = 2W P3 = 1Wa) 4.43 mmb) 2.28 mmc) 8.93 mmd) 12.68 mmCorrect answer is option 'C'. Can you explain this answer? tests, examples and also practice Class 7 tests.