The elastic behavior of material for linear stress and linear strain is shown in the figure. The energy density for a linear strain of 5 × 10-4 is _________ kJ/m3. Assume that material is elastic up to the linear strain of 5 × 10-4.

F9 Madhuri Engineering 29.09.2022 D15

Answer (Detailed Solution Below) 25

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JEE Main 04 April 2024 Shift 1
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Detailed Solution

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Concept: 

In this question, we have to use the concept of stress and strain which can be defined by using Hooke's law, which states that stress is directly proportional to strain. 

stress ∝ strain     -----(1)

Here proportionality constant is 'λ' which is known as the elasticity constant. which can be defined as the ratio of stress and strain. 

λ = stress/ strain    -----(2)

Energy density can be defined as = (1/2) × stress × strain     -----(3)

Using equations (2) and (3) we get:

Energy density = (1/2) × λ × (strain)2     -----(4)

Calculations:

Given:

F9 Madhuri Engineering 29.09.2022 D15

Linear strain = 5 × 10-4 then energy density =?

The slope of the graph is = \(\frac{Y_{2}- Y_{1}}{X_{2} - X_{1}}\) = 1/λ    -----(5)

Slope = 10-10/ 20 = 1/λ ⇒ λ = 20 × 1010 

Using Equation (4) we get: 

Energy density = (1/2) × λ × (strain)2 

= (1/2) × 20× 1010 × (5× 10-4)2 = 25 × 103 J/m3 = 25 KJ/m3

Hence, the correct answer is 25.

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