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For a given material, the modulus of rigidity is 120 GPa and Poisson’s ratio is 0.4. The value of modulus of elasticity in GPa is
  • a)
    120
  • b)
    276
  • c)
    312
  • d)
    336
Correct answer is option 'D'. Can you explain this answer?
Verified Answer
For a given material, the modulus of rigidity is 120 GPa and Poisson&r...
E = 2G (1 + μ) = 2 × 120 (1 + 0.4) = 336 GPa
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Most Upvoted Answer
For a given material, the modulus of rigidity is 120 GPa and Poisson&r...
Modulus of Elasticity Calculation
Modulus of elasticity (E) can be calculated using the formula:
E = 2 * G * (1 + v)
where G is the modulus of rigidity and v is Poisson's ratio.

Given Data
- Modulus of rigidity (G) = 120 GPa
- Poisson's ratio (v) = 0.4

Calculation
E = 2 * 120 * (1 + 0.4)
E = 2 * 120 * 1.4
E = 336 GPa
Therefore, the value of modulus of elasticity is 336 GPa. Hence, the correct answer is option 'D'.
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Community Answer
For a given material, the modulus of rigidity is 120 GPa and Poisson&r...
E=2G(1+u)
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For a given material, the modulus of rigidity is 120 GPa and Poisson’s ratio is 0.4. The value of modulus of elasticity in GPa isa)120b)276c)312d)336Correct answer is option 'D'. Can you explain this answer?
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