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The pitch of a screw gauge is 1mm and it...

The pitch of a screw gauge is `1mm` and its cap is divided into `100` divisions. When this screw gauge is used to measure the diameter of a wire, then main scale reading is `2 mm` and `58^(th)` division of circular scale coincides with the main scale. There is no zero error in the screw gage. Then the diameter of the wire is

A

`2.38 mm`

B

`2.48 mm`

C

`2.58 mm`

D

`3.58 mm`

Text Solution

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The correct Answer is:
To find the diameter of the wire using the screw gauge, we can follow these steps: ### Step 1: Understand the given values - **Pitch of the screw gauge (P)** = 1 mm - **Number of divisions on the circular scale (n)** = 100 - **Main scale reading (MSR)** = 2 mm - **Circular scale reading (CSR)** = 58th division - **Zero error** = 0 (no zero error) ### Step 2: Calculate the Least Count (LC) The least count of the screw gauge can be calculated using the formula: \[ \text{Least Count (LC)} = \frac{\text{Pitch}}{\text{Number of divisions}} = \frac{P}{n} \] Substituting the values: \[ \text{LC} = \frac{1 \text{ mm}}{100} = 0.01 \text{ mm} \] ### Step 3: Calculate the value from the circular scale reading The value from the circular scale reading can be calculated by multiplying the least count by the circular scale reading: \[ \text{Value from CSR} = \text{LC} \times \text{CSR} = 0.01 \text{ mm} \times 58 = 0.58 \text{ mm} \] ### Step 4: Calculate the total diameter of the wire Now, we can find the diameter of the wire by adding the main scale reading and the value from the circular scale reading: \[ \text{Diameter (D)} = \text{MSR} + \text{Value from CSR} = 2 \text{ mm} + 0.58 \text{ mm} = 2.58 \text{ mm} \] ### Final Answer The diameter of the wire is **2.58 mm**. ---

To find the diameter of the wire using the screw gauge, we can follow these steps: ### Step 1: Understand the given values - **Pitch of the screw gauge (P)** = 1 mm - **Number of divisions on the circular scale (n)** = 100 - **Main scale reading (MSR)** = 2 mm - **Circular scale reading (CSR)** = 58th division - **Zero error** = 0 (no zero error) ...
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