18.7
A 75 centimeter long metal wire is placed inside a furnace at 450 degrees Celsius. If the wire length changes to 75.77 centimeters, and the room temperature is 20 degrees Celsius, evaluate the coefficient of linear expansion of the wire's material.
After cooling, both ends of the wire are attached to a stand and placed inside the furnace at 200 degrees Celsius. Evaluate the thermal stress generated if Young's modulus is 7.0 x 1010 Pascals, and identify the wire's material.
The coefficient of linear expansion of the wire depends on the initial length, the temperature gradient, and the change in length and is calculated as 2.4 x10-5 per degrees Celsius.
Further, the thermal stress generated can be calculated using Young's modulus, the temperature gradient, and the linear expansion coefficient of the wire's material and is calculated as 3.02 x102 megapascals.
The values of the coefficient of expansion and Young's modulus suggest that the wire is most likely made of aluminum.
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