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A cantilever of length 6 m is loaded as shown in the figure below. The maximum deflection in the beam is
E = 200 MPa, I = 1 × 10−4 m−4, W = 1 kN.
P1 = 3W P2 = 2W P3 = 1W
  • a)
    4.43 mm
  • b)
    2.28 mm
  • c)
    8.93 mm
  • d)
    12.68 mm
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
A cantilever of length 6 m is loaded as shown in the figure below. Th...
EI = 200 × 106 × 1 × 10−4 = 200,00 kNm2
Slope at free end
I =
=
=
= 0.002 radian
Deflection at free end
y =
=
=
=
= 0.00893 m = 8.93 mm
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Most Upvoted Answer
A cantilever of length 6 m is loaded as shown in the figure below. Th...
EI = 200 × 106 × 1 × 10−4 = 200,00 kNm2
Slope at free end
I =
=
=
= 0.002 radian
Deflection at free end
y =
=
=
=
= 0.00893 m = 8.93 mm
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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?
Question Description
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 according to 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. Find important definitions, questions, meanings, examples, exercises and tests below 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?.
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