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Karnataka Board PUCPUC Science Class 11

The Two Wires Shown in Figure Are Made of the Same Material ,Find the Maximum Load that Can Be Put on the Hanger Without Breaking a Wire. Which Wire Will Break First If the Load is Increased? - Physics

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Question

The two wires shown in figure are made of the same material which has a breaking stress of 8 × 108 N m−2. The area of cross section of the upper wire is 0.006 cm2 and that of the lower wire is 0.003 cm2. The mass m1 = 10 kg, m2 = 20 kg and the hanger is light.  Find the maximum load that can be put on the hanger without breaking a wire. Which wire will break first if the load is increased?

Short/Brief Note
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Solution

 Given: 

\[\text{ Breaking stress of wire }= 8 \times {10}^8 \text{ N/ m}^2 \]
\[\text{ Area of cross - section of upper wire } ( A_\text{u} ) = 0 . 006 {\text{ cm }}^2 = 6 \times {10}^{- 7} \text{m}\]
\[\text{ Area of cross - section of lower wire }( A_\text{l} ) = 0 . 003 {\text{cm }}^2 = 3 \times {10}^{- 7} \text{m}\]
\[ \text{m}_1 = 10 \text{ kg, m}_2 = 20 \text{ kg }\]

Tension in lower wire 

\[T_\text{l} = \text{m}_1 \text{ g + w}\]
Here : g is the acceleration due to gravity
           w is the load
∴ Stress in lower wire
\[= \frac{\text{T}_\text{l}}{\text{A}_\text{l}} = \frac{\text{m}_1 \text{g + w}}{\text{A}_\text{l}}\]
\[\Rightarrow \frac{\text{m}_1 \text{g + w}}{\text{A}_\text{l}} = 8 \times {10}^8 \]
\[ \Rightarrow \text{w} = \left[ \left( 8 \times {10}^8 \right) \times \left( 3 \times {10}^{- 7} \right) \right] - 100\]
\[ \Rightarrow \text{ w = 140 N or 14 kg }\]
Now, tension in upper wire 
\[T_2 = \text{ m }_1 \text{g + m}_2 \text{g + w}\]
∴ Stress in upper wire
 
\[= \frac{\text{T}_\text{u}}{\text{A}_\text{u}} = \frac{\text{m}_2 \text{g + m}_1 \text{g + w}}{\text{A}_\text{u}}\] 
\[\Rightarrow \frac{\text{m}_2 \text{g + m}_1 \text{g + w}}{\text{A}_\text{u}} = 8 \times {10}^8 \]
\[ \Rightarrow \text{w = 180 N or 18 kg}\]
For the same breaking stress, the maximum load that can be put is 140 N or 14 kg. The lower wire will break first if the load is increased.
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Chapter 14: Some Mechanical Properties of Matter - Exercise [Page 300]

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HC Verma Concepts of Physics Vol. 1 [English] Class 11 and 12
Chapter 14 Some Mechanical Properties of Matter
Exercise | Q 6.1 | Page 300
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